Hedging Introduction, Meaning & Definition, Objectives, Functions, Types, Strategies

A hedge is an investment that is made with the intention of reducing the risk of adverse price movements in an asset. Normally, a hedge consists of taking an offsetting or opposite position in a related security.

Working

Hedging is somewhat analogous to taking out an insurance policy. If you own a home in a flood-prone area, you will want to protect that asset from the risk of flooding to hedge it, in other words by taking out flood insurance. In this example, you cannot prevent a flood, but you can plan ahead of time to mitigate the dangers in the event that a flood did occur.

There is a risk-reward tradeoff inherent in hedging; while it reduces potential risk, it also chips away at potential gains. Put simply, hedging isn’t free. In the case of the flood insurance policy example, the monthly payments add up, and if the flood never comes, the policyholder receives no payout. Still, most people would choose to take that predictable, circumscribed loss rather than suddenly lose the roof over their head.

Objectives & Functions

The basic purpose of hedging is to secure pro­tection against fluctuation in prices. This protec­tion is secured by shifting the risks of price changes to the professional risk-takers i.e., speculators. The traders who have to buy goods and keep them in stock for considerable periods can meet the possi­ble ups and downs in the prices by hedging their purchases.

Similarly, a manufacturer who manu­factures goods according to a carefully prepared budget can save hi-self from upsetting results of rise in the prices of raw materials by hedging in the futures market. An exporter also can save himself from possible losses due to changes in prices through hedging.

Besides insuring itself against losses from fluc­tuating prices a firm can receive better credit facili­ties from the bank if it hedges its goods.

Types

Commodities

Commodities include agricultural products, energy products, metals, etc. The risk associated with these commodities is known as “Commodity Risk.”

Securities

Securities include investments in shares, equities, indices, etc. The risk associated with these securities is known as “Equity Risk” or “Securities Risk.”

Currencies

Currencies include foreign currencies. There are various types of risks associated with it. For Example, “Currency Risk (or Foreign Exchange (Currency) Exposure Risk),” “Volatility Risk,” etc.

Interest Rates

Interest rates include lending and borrowing rates. The risks associated with these rates are known as “Interest Rate Risks.”

Weather

Interestingly, the weather is also one of the areas where hedging is possible.

Hedging Types

Forward

Forward (or a Forward Contract) is a non-standardized contract to buy or sell an underlying asset between two independent parties at an agreed price and a specified date. It covers various contracts like forwarding exchange contracts for currencies, commodities, etc.

Futures

Futures (or a Futures Contract) is a standardized contract to buy or sell an underlying asset between two independent parties at an agreed price, standardized quantity, and a specific date. It covers various contracts like currency futures contracts, etc.

Money Markets

It is one of the major components of financial markets; today, where short-term lending, borrowing, buying, and selling are done with a maturity of one year or less. Money markets cover a variety of contracts like money market operations for currencies, money market operations for interest, covered calls on equities, etc.

Strategies:

A hedging strategy generally refers to the risk reduction technique of investment. There can be no standard strategy to hedge various financial instruments like forwarding contracts, options, swaps, or stocks because these strategies require constant modification as per the type of market and investment, which requires hedging. To face such situations, a business can implement a few strategies, which are as follows:

Through Options

You can do this by buying a put option to protect a portfolio of the cash market.

Through Asset Allocation

You can do this by diversifying your portfolio with more than one type of asset. E.g., you can invest 70% in equity and the rest 30% in other more stable assets to create a balanced portfolio.

Staying in Cash

It is a ‘No Investment’ strategy. Here, the investor does not invest in any asset and thereby keeps his cash in hand.

Through Structures

You can do this by investing a portion of the portfolio in debt and the other in derivatives. Where the debt portion brings stability to the portfolio, the derivatives help in protecting it from the downside risk.

Advantages of Hedging

  • Hedging limits the losses to a great extent.
  • Hedging increases liquidity as it facilitates investors to invest in various asset classes.
  • Hedging requires lower margin outlay and thereby offers a flexible price mechanism.

Limitations of Hedging:

One might think that hedging provides a com­plete insurance against price changes. This is not correct for hedging has its limitations due to which it may afford only an imperfect protection against losses due to fluctuating prices.

  1. The practice of hedging will provide full measure of protection against changes in prices if the prices in the cash market and futures market move together in perfect harmony with each other. Possibilities of a loss will arise when the prices move in opposite directions and change at differ­ent rates in the two markets. In such a case, the protective mechanism of hedging will fail.
  2. The contracts in the futures market relate to the contract grade or basic grade. On the cash mar­ket, a specific grade other than the contract grade may also be purchased or sold. Hedging will serve its protective purpose only if the prices of the con­tract grade of a futures market and the other grades of cash market move together.
  3. In the futures market, purchases or sales can be made only in terms of the trading units fixed by the exchange concerned. If a manufacturer’s re­quirements fall short of the unit, hedging will be of little use for offsetting losses against profits as be­tween the two markets.
  4. Hedging may not provide enough protec­tion to a manufacturer in case there is a rise in the cost of production, not due to a rise in the price of raw materials but because of increase in wages and other expenses. This will be so because hedging can offset losses only on account of raw materials which are traded at the commodity exchanges. It cannot obviously affect other costs entering the total cost of production.

Key differences between Speculation and Hedging

Speculation in commodity derivatives involves taking directional positions in futures, options, or swaps to profit from anticipated price movements, without any underlying physical exposure. Unlike hedgers who seek price protection, speculators assume price risk willingly, providing essential liquidity and depth to the markets. They analyze supply-demand dynamics, weather patterns, geopolitical events, and macroeconomic indicators to forecast price directions. Speculators can take long positions (betting on price increases) or short positions (betting on price declines). Their participation ensures continuous price discovery and tighter bid-ask spreads. However, speculation carries substantial risk due to leverage and volatility. Successful speculation requires disciplined risk management, technical and fundamental analysis, and an exit strategy.

Characteristics of Speculation:

1. Profit Motive

The primary characteristic of speculation is the intention to earn profit from changes in commodity prices. Speculators buy or sell derivative contracts based on their expectations about future market movements. If a speculator expects prices to increase, they may take a long position and attempt to sell at a higher price later. If prices are expected to decline, they may take a short position. Unlike hedgers, speculators generally do not participate to protect an existing physical commodity exposure. Their main objective is to benefit from price fluctuations. Thus, the profit motive distinguishes speculation from other commodity market activities such as hedging.

2. High Risk Bearing Capacity

Speculation involves accepting a relatively high level of market risk in expectation of earning profits. Speculators deliberately take positions without necessarily having an underlying commodity exposure. Their profits or losses depend mainly on whether actual price movements match their expectations. Commodity prices can be affected by demand, supply, weather, economic conditions and global events, making speculative positions uncertain. Therefore, successful speculation requires the ability to tolerate potential financial losses. Participants should understand derivative contracts, leverage and margin requirements before taking positions. The willingness to accept price risk is an important characteristic that distinguishes speculators from risk avoiding hedgers.

3. Dependence on Price Expectations

Speculation is strongly based on expectations about future price movements. Speculators study market information and form opinions about whether commodity prices are likely to rise or fall. They may analyse demand and supply, production levels, inventories, weather conditions, international prices, economic indicators and government policies. Based on these expectations, they take long or short positions in derivative contracts. If their expectations are correct, they may earn profits; if incorrect, they may suffer losses. Therefore, speculation depends heavily on the ability to interpret market information and anticipate price movements. Accurate market forecasting can significantly influence the outcome of speculative transactions.

4. Use of Leverage

Leverage is an important characteristic of speculation in commodity derivatives. Derivative contracts generally require participants to deposit a margin rather than paying the full value of the underlying commodity. This allows a speculator to control a relatively large contract value with comparatively smaller capital. While leverage can increase potential returns, it can also magnify losses when prices move against the position. For example, a small adverse movement in a commodity price can create a significant loss relative to the margin deposited. Therefore, speculators must carefully manage their positions and understand margin requirements because leverage increases both the potential profit and financial risk.

5. Short Selling

Speculators can benefit from both rising and falling commodity prices because derivative markets permit long and short positions. When a speculator expects prices to decline, they may sell a futures contract without owning the physical commodity. This is commonly referred to as taking a short position. If the price subsequently falls, the position may generate a profit when it is closed at a lower price. This ability to take short positions provides flexibility and allows speculators to express negative as well as positive market expectations. Short selling also contributes to market liquidity and helps incorporate different expectations into the process of price discovery.

6. Short Term Trading

Speculation is often associated with short term trading, where participants attempt to benefit from relatively quick changes in commodity prices. Speculators may open and close positions within a day, several days or a short period depending on their trading strategy. They closely monitor price movements, trading volumes, market news and other indicators to identify potential opportunities. Frequent trading can provide opportunities for profit but also increases transaction costs and exposure to market volatility. Short term speculation requires careful decision making and risk management. However, not every speculative position is necessarily short term; some participants may maintain positions for longer periods based on broader price expectations.

7. Contribution to Market Liquidity

Speculators contribute to market liquidity by continuously participating in buying and selling activities. Their willingness to take positions based on expected price movements increases the number of market participants and transactions. Greater liquidity can make it easier for hedgers and other participants to enter or exit derivative positions. Speculative trading also helps bring together participants with different expectations about future prices. This supports smoother trading and contributes to price discovery. Although excessive speculation can create risks, reasonable speculative participation is an important part of an active commodity derivatives market. Thus, speculators can improve market functioning through their willingness to accept price risk.

8. No Direct Interest in Underlying Commodity

Speculators generally have no direct commercial requirement for the physical commodity underlying their derivative contracts. Their primary interest is in earning a profit from price changes rather than producing, consuming, storing or delivering the commodity. For example, a speculator may trade crude oil futures without being an oil producer or consumer. They analyse market conditions and take positions based on expected price movements. This distinguishes speculators from hedgers, who use derivatives to manage an existing or anticipated commodity exposure. Although speculators may not have a physical interest, their participation contributes to liquidity, trading activity and efficient price discovery in commodity derivative markets.

9. Dependence on Market Information

Successful speculation requires access to and analysis of market information. Speculators monitor factors that may influence commodity prices, including demand and supply, inventories, production, weather, government policies, currency movements, interest rates and international developments. They use this information to estimate possible future price movements and determine whether to buy or sell derivative contracts. Rapid changes in information can significantly affect speculative positions. Therefore, the ability to interpret information quickly and make appropriate trading decisions is important. However, information cannot guarantee profits because commodity markets remain uncertain. Dependence on market information makes analysis and judgement essential characteristics of speculative activity.

10. Possibility of Significant Losses

Speculation involves a substantial possibility of financial losses because profits depend on uncertain future price movements. If a speculator’s expectations are incorrect, the derivative position may generate losses. The use of leverage can further increase the size of losses relative to the initial margin deposited. Commodity markets may also experience sudden price movements due to weather events, geopolitical developments, changes in demand and supply or economic conditions. Therefore, speculation requires proper risk management, position control and awareness of margin obligations. The possibility of both high profits and significant losses makes speculation fundamentally different from conservative investment or risk reducing hedging.

Types of Speculation:

1. Bullish Speculation

Bullish speculation occurs when a speculator expects the price of a commodity to increase in the future. The speculator purchases futures or other derivative contracts with the intention of selling them later at a higher price. Profit is generally earned when the price rises as expected. For example, if a trader expects gold prices to increase, they may take a long position in gold futures. However, if prices decline instead, the speculator may incur a loss. Bullish speculation therefore involves taking long positions based on expectations of rising prices. It provides liquidity to the market but involves considerable price risk.

2. Bearish Speculation

Bearish speculation occurs when a speculator expects the price of a commodity to fall in the future. The speculator generally takes a short position in a futures contract with the intention of benefiting from a subsequent decline in price. If the price falls as expected, the position may generate a profit. For example, a trader expecting crude oil prices to decline may sell crude oil futures. However, if prices increase instead, the speculator may suffer losses. Bearish speculation allows participants to benefit from declining markets and contributes to trading activity, liquidity and price discovery in commodity derivative markets.

3. Day Speculation

Day speculation involves opening and closing a speculative position within the same trading day. The speculator attempts to earn profits from short term changes in commodity prices without maintaining the position overnight. Traders closely monitor price movements, trading volumes, market news and other indicators to identify opportunities. For example, a trader may buy a commodity futures contract in the morning and sell it later the same day after a favourable price movement. Day speculation can provide quick profit opportunities but also involves considerable risk because prices may change rapidly. It requires active monitoring, timely decisions and disciplined risk management.

4. Position Speculation

Position speculation involves holding a speculative position for a longer period, such as several days, weeks or months, based on expectations about broader commodity price movements. The speculator analyses fundamental factors such as demand, supply, inventories, production and economic conditions before taking a position. For example, a trader expecting agricultural commodity prices to rise during a particular season may maintain a long futures position for several weeks. Position speculation does not depend entirely on short term price fluctuations. However, holding positions for longer periods increases exposure to market uncertainty and margin requirements. Therefore, careful position management and market analysis are essential.

5. Spread Speculation

Spread speculation involves simultaneously taking positions in two related commodity contracts to benefit from changes in the price difference between them. The speculator may buy one contract and sell another rather than taking a simple directional position. Examples include trading contracts with different expiry dates or related commodities. Profit depends on the movement of the spread rather than solely on the overall direction of commodity prices. Spread speculation can sometimes reduce exposure to broad market movements compared with outright positions. However, it still involves basis and market risks. This strategy requires understanding price relationships, contract specifications and market trends.

6. Intraday Speculation

Intraday speculation refers to buying and selling commodity derivative contracts within a single trading session to benefit from short term price fluctuations. Speculators may use technical analysis, market news, price patterns and trading volumes to identify potential opportunities. Unlike longer term speculation, intraday positions are normally closed before the trading session ends. This reduces exposure to overnight events but requires quick decision making and continuous market monitoring. Leverage can increase both potential profits and losses. Intraday speculation is therefore suitable only for participants who understand market volatility and derivative risks. Proper stop loss and position management are important for controlling potential losses.

7. Technical Speculation

Technical speculation is based primarily on the analysis of price movements and market data rather than physical commodity requirements. Speculators study price charts, trading volumes, trends, support and resistance levels and other technical indicators to predict possible future movements. Based on their analysis, they may take long or short positions in commodity futures or options. For example, a trader identifying an upward price trend may purchase a futures contract expecting further appreciation. Technical speculation can help traders make structured decisions, but historical patterns do not guarantee future results. Therefore, technical analysis should be combined with appropriate risk management and position control.

8. Fundamental Speculation

Fundamental speculation involves taking derivative positions based on an analysis of the economic and physical factors affecting commodity prices. Speculators examine demand and supply, production levels, inventories, weather conditions, government policies, international trade and global economic developments. For example, an expected shortage of a commodity may lead a speculator to anticipate higher future prices and take a long position. Similarly, expectations of increased production may encourage a short position. Fundamental speculation focuses on the underlying economic conditions rather than only price charts. It requires detailed market knowledge and careful assessment because unexpected events can cause prices to move differently from expectations.

9. Options Speculation

Options speculation involves using commodity call and put options to profit from expected price movements. A speculator expecting prices to rise may purchase a call option, while one expecting prices to fall may purchase a put option. The option buyer pays a premium and receives the right, but generally not the obligation, to exercise the contract according to its terms. Options can provide defined risk for buyers because the maximum loss is generally limited to the premium paid. However, the option may expire worthless if the expected price movement does not occur. Thus, options provide flexible opportunities for speculative trading while still involving market risk.

Hedging

Hedging is a risk management technique used to protect against unfavourable price movements in commodities and financial assets. It involves taking a position in a derivative contract, such as futures or options, that can offset potential losses from an existing or expected position in the physical market. Producers generally use hedging to protect against falling prices, while consumers use it to protect against rising prices. For example, a farmer may sell commodity futures before harvest to protect expected selling revenue. Similarly, a manufacturer may buy futures to control future raw material costs. Thus, hedging helps reduce price uncertainty, stabilise cash flows, protect profit margins and support effective business planning.

Characteristics of Hedging:

1. Risk Reduction

The primary characteristic of hedging is the reduction of financial risk arising from unfavourable commodity price movements. A hedger takes a position in a suitable derivative contract to offset potential losses in the physical market. For example, a commodity producer may sell futures to protect against falling prices. Similarly, a consumer may buy futures to protect against rising prices. Hedging does not necessarily eliminate all risks because factors such as basis risk and market changes may remain. Its main purpose is to make financial outcomes more predictable. Thus, risk reduction distinguishes hedging from speculation, where the primary objective is profit.

2. Existing or Expected Exposure

Hedging generally involves an existing or expected exposure to the underlying commodity. A hedger has a genuine commercial interest because they may produce, purchase, sell or consume the commodity. The derivative position is taken to reduce the risk associated with this exposure. For example, a farmer expecting to sell wheat after harvest may use wheat futures to protect against falling prices. Similarly, a manufacturer expecting to purchase copper may hedge against rising prices. Therefore, hedging is closely connected with the physical or financial position of the participant. This characteristic differentiates hedgers from speculators, who generally do not have such underlying exposure.

3. Use of Derivative Contracts

Hedging commonly uses commodity futures and options to manage price risk. The derivative position is selected according to the nature and direction of the underlying exposure. A producer may sell futures when concerned about falling prices, whereas a consumer may buy futures when concerned about rising prices. Options can also provide protection against adverse price movements while allowing participation in favourable movements. The effectiveness of hedging depends on selecting an appropriate contract, quantity and maturity. Therefore, derivative instruments provide the mechanism through which market participants can transfer or reduce part of the price risk associated with their commodity exposure.

4. Protection Against Adverse Price Movements

Hedging is designed primarily to provide protection against adverse price movements. Producers generally face the risk of falling commodity prices, while consumers face the risk of rising prices. A suitable derivative position can generate gains when the physical market position suffers a loss. For example, if a producer sells futures and the commodity price subsequently declines, the gain on the futures position can partly compensate for the lower physical selling price. Similarly, a consumer’s futures gain may offset higher purchase costs. Thus, hedging provides a mechanism for reducing the financial impact of unfavourable market movements and improving price certainty.

5. Price Certainty

An important characteristic of hedging is that it provides greater certainty about future commodity prices. Commodity prices can fluctuate significantly due to demand, supply, weather, inventories, international markets and economic conditions. By using futures or options, businesses can reduce the uncertainty surrounding future purchase or selling prices. For example, a manufacturer may hedge an expected raw material purchase to obtain greater certainty regarding its future cost. Although the actual final price may differ because of basis or other risks, hedging can make financial planning more predictable. Therefore, price certainty helps businesses prepare budgets, production plans and cash flow forecasts more effectively.

6. Profit Stability

Hedging helps businesses achieve greater stability in profits by reducing the impact of commodity price fluctuations. Producers may face lower revenues when prices fall, while consumers may experience higher costs when prices rise. An appropriately designed derivative position can offset part of these adverse effects. For example, a manufacturer can hedge the cost of an important raw material to reduce the possibility of unexpected cost increases. Hedging does not guarantee a fixed profit, but it can make business results more predictable. Therefore, it is particularly useful for businesses seeking to protect profit margins and maintain financial stability despite changing commodity market conditions.

7. Risk Transfer

Hedging facilitates the transfer of price risk from participants who want to reduce their exposure to those willing to accept it. For example, a producer concerned about falling prices may sell futures, while another market participant may take the opposite position based on a different expectation or requirement. Through derivative markets, price risk can therefore be distributed among different participants. Hedging allows businesses to focus on their primary activities rather than taking unnecessary exposure to unpredictable commodity prices. This risk transfer function contributes to the overall efficiency of commodity markets. Thus, hedging is an important mechanism for managing and reallocating market risk.

8. Reduction of Financial Uncertainty

Hedging reduces financial uncertainty by making future commodity related costs or revenues more predictable. Businesses often need to make decisions months before the actual purchase or sale of a commodity. During this period, prices may change considerably. By entering appropriate derivative contracts, they can reduce the financial effect of such changes. For example, an importer can hedge against an expected increase in commodity prices, while a producer can protect expected sales against a price decline. Reduced uncertainty helps management make better decisions regarding budgets, working capital, production and investment. Therefore, hedging supports financial planning and business stability.

9. Possibility of Basis Risk

Hedging does not completely eliminate risk because of basis risk. Basis represents the difference between the spot price and the futures price. The price of the derivative and the physical commodity may not move by exactly the same amount. If this relationship changes unexpectedly, the hedge may be less effective than anticipated. Basis risk can arise because of differences in commodity quality, location, timing or market conditions. Therefore, even when a participant has correctly identified the direction of risk, the hedge may not provide complete protection. Effective hedging requires careful selection of the underlying commodity, contract maturity and contract quantity.

10. Focus on Risk Management

The fundamental objective of hedging is risk management, rather than earning speculative profits. A hedger normally takes a derivative position because they have an existing or anticipated exposure that needs protection. The objective is to reduce the effect of adverse price movements and achieve greater financial stability. Hedgers therefore evaluate their exposure, risk tolerance, contract specifications and expected cash flows before selecting a suitable strategy. Unlike speculation, where participants deliberately accept price risk to seek profits, hedging attempts to control that risk. Consequently, hedging is an important financial management technique for producers, consumers, traders and other commodity market participants.

Types of Hedging:

1. Long Hedge

A long hedge is used when a market participant expects to purchase a commodity in the future and wants protection against a possible price increase. The hedger takes a long position by buying futures contracts. If the commodity price rises, the gain on the futures position can compensate for the higher physical purchase cost. This strategy is commonly used by manufacturers, processors, importers and commodity consumers. For example, a food processing company expecting to purchase wheat after three months may buy wheat futures today. A long hedge therefore provides greater price certainty, helps control input costs and supports effective financial planning.

2. Short Hedge

A short hedge is used when a participant expects to sell a commodity in the future and wants protection against a possible price decline. The hedger takes a short position by selling futures contracts. If the commodity price falls, the gain from the futures position can partly offset the lower revenue from the physical commodity. Producers such as farmers, mining companies and manufacturers commonly use this strategy. For example, a farmer expecting to sell wheat after harvest may sell wheat futures before harvesting. A short hedge helps protect future selling revenue, stabilise income and reduce the uncertainty created by changing commodity prices.

3. Cross Hedge

A cross hedge is used when a suitable futures contract for the exact commodity being hedged is not available. The hedger uses a derivative contract based on a closely related commodity whose price generally moves in a similar direction. For example, a company exposed to the price of a particular petroleum product may use crude oil futures for protection. The effectiveness of a cross hedge depends on the relationship between the two prices. Since the prices may not move identically, basis risk remains. Cross hedging provides useful protection where direct hedging is unavailable, but careful selection of the related commodity is essential.

4. Anticipatory Hedge

An anticipatory hedge is taken before an expected commodity purchase or sale occurs. It protects against an unfavourable price movement during the period between the present time and the expected future transaction. A participant may buy or sell futures depending on the direction of the underlying exposure. For example, a manufacturer expecting to purchase copper after two months may buy copper futures to protect against a possible price increase. When the physical transaction occurs, the derivative position can help offset the adverse price movement. Anticipatory hedging improves price certainty, supports budgeting and allows businesses to plan future commodity transactions with greater financial confidence.

5. Selective Hedge

A selective hedge involves hedging only when the participant believes that market conditions create a significant risk of an unfavourable price movement. Instead of continuously protecting the entire exposure, the business evaluates price trends, volatility, market expectations and financial objectives before taking a derivative position. For example, a commodity producer may remain unhedged during favourable market conditions but sell futures when it expects prices to decline substantially. Selective hedging provides flexibility and allows participants to retain some benefit from favourable market movements. However, it depends heavily on market forecasts, and incorrect expectations may result in missed opportunities or financial losses.

6. Full Hedge

A full hedge involves protecting almost the entire underlying commodity exposure through an appropriate derivative position. The quantity and maturity of the derivative contract are generally matched as closely as possible with the expected physical exposure. For example, a producer expecting to sell 10,000 units of a commodity may hedge approximately the same quantity through futures contracts. The objective is to minimise the effect of adverse price movements and achieve greater price certainty. Full hedging can provide substantial protection against market volatility, but it may reduce the opportunity to benefit from favourable price movements. Basis risk and other operational risks may also remain.

7. Partial Hedge

A partial hedge involves protecting only a portion of the total commodity exposure through futures or options. The remaining portion remains exposed to market price movements. Businesses may use partial hedging when future requirements are uncertain or when they want to balance risk protection with the possibility of benefiting from favourable price changes. For example, a company expecting to purchase 10,000 units of a commodity may hedge 6,000 units and leave the remaining 4,000 units unhedged. Partial hedging provides flexibility and can reduce the cost of hedging. However, the unhedged portion continues to carry price risk.

8. Rolling Hedge

A rolling hedge involves extending an existing hedge by closing or settling a derivative contract approaching expiry and taking a new position with a later maturity. This strategy is useful when the underlying commodity exposure continues beyond the expiry of the original contract. For example, a company requiring price protection for one year may initially use a three month futures contract and subsequently replace it with another contract. Rolling the hedge allows protection to continue over a longer period. However, the hedger faces rollover risk, changes in futures prices and additional transaction costs. Proper monitoring is therefore necessary to maintain effective protection.

9. Options Based Hedge

An options based hedge uses commodity call options or put options to protect against adverse price movements. A consumer concerned about rising prices may purchase a call option, while a producer concerned about falling prices may purchase a put option. The buyer pays a premium for the right to exercise the option according to its terms. Options provide greater flexibility than futures because the buyer can generally avoid exercising when the market moves favourably. This allows participation in favourable price movements while providing protection against adverse movements. Therefore, options based hedging combines risk protection with flexibility, although the premium represents a cost.

10. Spread Hedge

A spread hedge involves taking positions in two related derivative contracts to manage differences between their prices. The contracts may have different expiry dates, grades, locations or related commodities. The objective is to reduce the effect of changes in the price relationship rather than simply protect against an overall increase or decrease in commodity prices. For example, a participant may use futures contracts with different maturity dates to manage timing related price exposure. Spread hedging requires an understanding of the relationship between the relevant contracts. It can improve risk management, but changes in the spread can still create basis and market risk.

Key Differences between Speculation and Hedging

Basis of Comparison Speculation Hedging
Main Objective Earning profit from price movements Reducing risk from price movements
Nature of Activity Deliberately accepts market risk Attempts to minimise market risk
Underlying Exposure Usually no underlying exposure Generally has underlying exposure
Primary Purpose Profit maximisation through market forecasts Protection against adverse price changes
Risk Attitude Willing to accept higher risk Generally seeks to reduce risk
Price Expectation Based on expected future price movements Based on existing or expected exposure
Derivative Position Takes positions for potential profits Takes positions to offset potential losses
Profit Objective Main focus is earning speculative profits Main focus is protecting existing profits
Market Direction Profits from expected price direction Protection regardless of market direction
Holding Period Often short term, but varies Depends on underlying exposure period
Market Participants Traders and professional speculators Producers, consumers and businesses
Financial Risk Potentially high financial losses Risk generally reduced through offsetting positions
Market Function Provides liquidity and price discovery Provides risk management and price certainty
Example Buying futures expecting prices to rise Selling futures before expected commodity sale
Main Outcome Profit or loss from market movements Reduced impact of adverse price movements

Can Speculation / Arbitration / Hedging mitigate financial risk for Companies?

Some financial risks can be shared through financial instruments known as derivatives, futures contracts or hedging. For example, exposure to foreign exchange risk can be mitigated by swapping currency requirements with another market participant. Equally other risks such as interest rate risk can be managed through the use of derivatives. These arrangements are usually managed under the common terms set out in the International Swaps and Derivatives Association (ISDA) master agreement.

Hedging arrangements will influence the cost of debt, and the breakage costs to be included in termination compensation. Hedge counterparties, or possibly a hedging bank, will be a party to the intercreditor agreement to formalize the sharing of security and arrangements on default. To the extent that hedge counterparties benefit from project security, in theory their hedges should also be limited recourse. Similarly, if hedge counterparties get paid out if they suffer a loss when they close out their hedge, then lenders will argue that they should share any windfall profits. These issues will be addressed in the intercreditor arrangements.

Derivatives are used in many functions in project finance transactions, including

  • Interest rate swaps: To manage movements in exchange rates to convert variable rate debt to fixed rate debt;
  • Currency swaps: To manage movements in currency exchange rates; and
  • Commodity derivatives: To fix the price of commodities over time.

The offtake purchaser may agree to bear interest rate risk, by indexing part of its tariff to cost of debt. However, such tariff adjustments to account for interest rate fluctuations are unlikely to be applied at the speed at which interest rate fluctuations can arise, creating a mismatch risk. Guarantees and other credit enhancement mechanisms can be used to mobilize fixed rate debt.

Explanation of Forward Contract with a simple example

Forward Contract Example

Old MacDonald had a farm, and on that farm, he grew corn a lot of corn. This year, he expects to produce 500 bushels of corn that he can sell at the price-per-bushel that’s available at harvest time or he can lock in a price now.

The Crunchy Breakfast Cereal Company needs plenty of corn to manufacture their cornflakes. They send a representative around to Old MacDonald’s farm and offer him a fixed price to be paid upon delivery of 500 bushels of corn at harvest.

With the forward contract, Old MacDonald will receive the delivery price if he can deliver 500 bushels of corn by a specific date. Based upon the expected delivery price, if he’s able to produce the 500 bushels of corn, he can plan this year’s farm revenues and next year’s expenses.

Because Crunchy Breakfast Cereal Company has a forward contract, they can control variable costs (such as the cost of corn) to make their breakfast cereal. Knowing the cost of corn in advance enables them to keep prices steady for the consumer. They risk overpaying Old MacDonald for his corn, but it’s a risk they’re willing to take to hold costs steady and retain market share for their cornflakes.

Example2

Forward contracts were first used by farmers. Let’s understand how a forward contract works with the help of an example of a rice farmer Mr Iyer who is based out of Madurai. Now, cultivation of crops is not an easy job. A farmer needs to plough the fields, sow the seeds, use fertilisers, ensure adequate irrigation etc. Also, he ends up investing a substantial amount of time, energy and resources. But the farmer earns money or returns on his produce only after selling the rice. His entire income is dependent on the produce.

So, let’s assume that currently rice is being sold at 20 per kg. If the price of the rice goes down, he will make losses. And if the price goes up, he stands to gain.

Hence, Mr Iyer would like to eradicate this uncertainty. So, he enters into an agreement with Mr. Raj, who is a wholesaler in Kolkata. The agreement states that Mr Raj will buy 500 kgs of rice at the price of 20 per kg, two months from now from Mr Iyer. This quantity of rice will be delivered to Mr Raj’s warehouse through trucks and the cost of transportation will be borne by Mr. Raj.

It means, in this scenario, Mr Iyer is the seller and Mr Raj is the buyer of this forward contract. The predetermined quantity of rice to be sold is 500 kgs and the price at which the rice will be sold is 20 per kg. Hence, the price of forward contract is 10,000 (500 * 20), which derives its value from the underlying rice.

The contract will be fulfilled on a future date two months from now. This is when the rice will be delivered to Mr Raj’s warehouse and Mr Iyer will receive  10,000. As this a customisable derivative contract terms such as delivering of rice to the warehouse and footing the transport costs can be incorporated into the contract. Also, both the parties in this transaction must agree on these terms.

Explanation of Future Contract with a simple example

For example, Crude Oil is currently selling at $60 a barrel, and a futures contract for $65 per barrel is available for three months’ time. As you believe the price of WTI will rise beyond $65 by the time of expiry, you buy the contract.

The market actually rises to $75. That means your prediction is correct and you could buy Crude at $65 per barrel and sell it on for $10 profit.

However, if your prediction was incorrect, and the market ended up short of $65, your contract could result in you paying above the market price in order to settle your contract.

Components

  1. Instrument Type:

If the underlying asset is the stock, of the futures contract in which we are entering then we check the details of Stock Futures.

Thus the instrument type is the ‘stock futures’

  1. Symbol:

This is the symbol of the stock that is Reliance, TCS Industries in this case.

  1. Expiry Date:

This is the date on which the contract ends.

The RELIANCE, TCS futures contract will expire on 27th Aug 2022 that is the last Thursday of the current month.

  1. Underlying Value:

This is the price at which the underlying asset is trading in the spot market.

We can see that the current spot price is Rs.2147.80 per share.

  1. Market lot (lot size):

As futures contracts are standardized contracts, lot size is also fixed.

The lot size refers to the minimum number of shares that can be bought or sold if we want to enter into an agreement.

Explanation of Option Contract with a simple example

An option contract is an agreement that gives the option holder the right to buy or sell the underlying asset at a certain date (known as expiration date or maturity date) at a prespecified price (known as strike price or exercise price) whereas the seller or writer of the option has no choice but obligated to deliver or buy the underlying asset if the option is exercised.

There are 2 Parties to the Contract

  • Option Holder or Buyer of the Option: It pays the initial cost to enter into the agreement. The call option buyer benefits from price increase but has limited downside risk in the event price decreases because at most he can lose is the option premium. Similarly, the put option buyer benefits from price decrease but has limited downside risk in the event when price increases. In short, they limit the investor’s downside exposure while keeping the upside potential unlimited.
  • Option Seller or Writer of the Option: It receives the premium at the initiation of the option contract to bear the risk. The call writer benefits from Price decrease but has unlimited upside risk in case price increases. Similarly put writer benefits if price increases as he will keep the premium but may lose a considerable amount of price decrease.

It gives the owner the right to buy an underlying asset at a strike price at the expiration date. The call owner is bullish (expects the stock price to rise) on the movement of the underlying assets. Let’s take an example Consider an investor who buys the call option with a strike of $7820. The current price is $7600, the expiration date is in 4 months and the price of the option to purchase one share is $50.

Long Call Payoff Per-Share = [MAX (Stock Price – Strike Price,0) – Upfront Premium Per Share

  • Case 1: if the stock price at expiration is $7920 the option will be exercised and the holder will buy it @ $7820 and sell it immediately in the market for $7920 realizing a gain of $100 considering upfront premium paid of $50, the net profit is $50.
  • Case 2: if the stock price at expiration is $7700 the option holder will choose not to exercise as there is no point in buying it at $7820 when the market price of the stock is $7700. Considering the upfront premium of $50, the net loss is $50.

Put option

It gives the owner the right to sell an underlying asset ta strike price at the expiration date. The put owner is bearish (expects the stock price to fall) on the movement of the stock price. Let’s take an example Consider an investor who buys the put option with a strike of $7550. The current price is $7600, the expiration date is in 3 months and the price of the option to purchase one share is $50.

Long Put Payoff Per-Share = [MAX (Strike Price – Stock Price, 0) – Upfront premium Per Share

  • Case 1: if the stock price at expiration is $7300 the investor will buy the asset in the market at $7300 and sell it under the terms of put option @7550 to realize a gain of $250. Considering the upfront premium paid $50 the net profit is $200.
  • Case 2: if the stock price at expiration is $7700 the put option expires worthless and the investor loses $50 which is the upfront premium.

Explanation of Swaps Contract with a simple example

Types of Swaps in Finance

There are several types of Swaps transacted in the financial world. They are a commodity, currency, volatility, debt, credit default, puttable, swaptions, Interest rate swap, equity swap, etc.

For example, imagine ABC Co. has just issued $1 million in five-year bonds with a variable annual interest rate defined as the London Interbank Offered Rate (LIBOR) plus 1.3% (or 130 basis points). Also, assume that LIBOR is at 2.5% and ABC management is anxious about an interest rate rise.

The management team finds another company, XYZ Inc., that is willing to pay ABC an annual rate of LIBOR​  plus 1.3% on a notional principal of $1 million for five years. In other words, XYZ will fund ABC’s interest payments on its latest bond issue. In exchange, ABC pays XYZ a fixed annual rate of 5% on a notional value of $1 million for five years. ABC benefits from the swap if rates rise significantly over the next five years. XYZ benefits if rates fall, stay flat, or rise only gradually.

EDU Inc. enters into a financial contract with CBA Inc. in which they have agreed to exchange cash flows making LIBOR as its benchmark wherein EDU Inc. will pay a fixed rate of 5% and receive a floating rate of LIBOR+2% from CBA Inc.

Now, if we see, in this financial contract, there are two legs of the transaction for both parties.

  • EDU Inc. is paying the fixed rate of 5% and receiving a floating rate (Annual LIBOR+2%), whereas CBA Inc. is producing a floating rate (Annual LIBOR+2%) and receiving a fixed percentage (5%).

In the above example, let’s assume that both the parties have entered into a swaps contract for one year with a notional principal of Rs.1,00,000/-(since this is an Interest rate swap, hence the principal will not be exchanged). And after one year, the one year LIBOR in the prevailing market is 2.75%.

To understand the comparative rate advantage, let’s assume that the EDU Inc. and CBA Inc. have their own borrowing capacities in both fixed as well as a floating market (as mentioned in the table below).

Company Fixed Market Borrowing Floating Market Borrowing
EDU Inc. 4.00% One year LIBOR-0.1%
CBA Inc. 5.20% One year LIBOR+0.6%

In the above table, we can see that EDU Inc. has an absolute advantage in both the market, whereas CBA Inc. has a comparative advantage in the floating rate market (as CBA Inc. is paying 0.5% more than EDU Inc.). Assuming both the parties have entered into a Swap agreement with the condition that EDU Inc. will pay one year LIBOR and receive 4.35% p.a.

The cash flows for this agreement are described in the table below for both the parties.

Cash Flows for EDU Inc.  
Receivable in a Swap agreement 4.35%
Payable in a Swap agreement LIBOR
Payable in fixed market borrowing 4.00%
Net Effect LIBOR-0.35%
Cash Flows for EDU Inc.  
Receivable in the Swap agreement LIBOR
Payable in the Swap agreement 4.35%
Payable in floating market borrowing LIBOR+0.6%
Net Effect 4.95%

Looking at the above cash flows, we can say that EDU Inc. has a net cash flow of LIBOR – 0.35% per annum, giving it an advantage of 0.25%, which EDU Inc. had to pay if it went directly in the floating market, i.e., LIBOR – 0.1%.

In the second scenario for CBA Inc., the net cash flow is 4.95% per annum, giving it an advantage of 0.25% in the fixed borrowing market if it had gone directly, i.e., 5.20%.

Forward Contract Meaning & Definition, Features, Terminologies

In finance, a forward contract or simply a forward is a non-standardized contract between two parties to buy or sell an asset at a specified future time at a price agreed on at the time of conclusion of the contract, making it a type of derivative instrument. The party agreeing to buy the underlying asset in the future assumes a long position, and the party agreeing to sell the asset in the future assumes a short position. The price agreed upon is called the delivery price, which is equal to the forward price at the time the contract is entered into.

The price of the underlying instrument, in whatever form, is paid before control of the instrument changes. This is one of the many forms of buy/sell orders where the time and date of trade is not the same as the value date where the securities themselves are exchanged. Forwards, like other derivative securities, can be used to hedge risk (typically currency or exchange rate risk), as a means of speculation, or to allow a party to take advantage of a quality of the underlying instrument which is time-sensitive.

The following are the four components:

  • Asset: This is the underlying asset that is specified in the contract.
  • Expiration Date: The contract will need an end date when the agreement is settled and the asset is delivered and the deliverer is paid.
  • Quantity: This is the size of the contract, and will give the specific amount in units of the asset being bought and sold.
  • Price: The price that will be paid on the maturation/expiration date must also be specified. This will also include the currency that payment will be rendered in.

Features

No premium: Since these contracts are not traded in markets, so a premium is involved.

Not traded: Forward contracts are designed to meet specific requirements of company. These contracts are not traded in the market.

No margin: Small fees are required to enter into a forward contract.

Physical delivery: These are inflexible and bind in nature. Therefore, at the time of delivery, physical delivery is required.

Expensive: More expensive than other hedge options because, these contracts are tailored made.

Terminologies

  • Quantity: This mainly refers to the size of the contract, in units of the asset that is being bought and sold.
  • Underlying Asset: This is the underlying asset that is mentioned in the contract. This underlying asset can be commodity, currency, stock, and so on.
  • Price: This is the price that will be paid on the expiration date must also be specified.
  • Expiration Date: This is the date when the agreement is settled and the asset is delivered and paid.

Working:

Suppose that Bob wants to buy a house a year from now. At the same time, suppose that Alice currently owns a $100,000 house that she wishes to sell a year from now. Both parties could enter into a forward contract with each other. Suppose that they both agree on the sale price in one year’s time of $104,000 (more below on why the sale price should be this amount). Alice and Bob have entered into a forward contract. Bob, because he is buying the underlying, is said to have entered a long forward contract. Conversely, Alice will have the short forward contract.

At the end of one year, suppose that the current market valuation of Alice’s house is $110,000. Then, because Alice is obliged to sell to Bob for only $104,000, Bob will make a profit of $6,000. To see why this is so, one needs only to recognize that Bob can buy from Alice for $104,000 and immediately sell to the market for $110,000. Bob has made the difference in profit. In contrast, Alice has made a potential loss of $6,000, and an actual profit of $4,000.

The similar situation works among currency forwards, in which one party opens a forward contract to buy or sell a currency (e.g. a contract to buy Canadian dollars) to expire/settle at a future date, as they do not wish to be exposed to exchange rate/currency risk over a period of time. As the exchange rate between U.S. dollars and Canadian dollars fluctuates between the trade date and the earlier of the date at which the contract is closed or the expiration date, one party gains and the counterparty loses as one currency strengthens against the other. Sometimes, the buy forward is opened because the investor will actually need Canadian dollars at a future date such as to pay a debt owed that is denominated in Canadian dollars. Other times, the party opening a forward does so, not because they need Canadian dollars nor because they are hedging currency risk, but because they are speculating on the currency, expecting the exchange rate to move favorably to generate a gain on closing the contract.

In a currency forward, the notional amounts of currencies are specified (ex: a contract to buy $100 million Canadian dollars equivalent to, say US$75.2 million at the current rate these two amounts are called the notional amount(s). While the notional amount or reference amount may be a large number, the cost or margin requirement to command or open such a contract is considerably less than that amount, which refers to the leverage created, which is typical in derivative contracts.

Futures Market in India Recent Developments

Equity derivatives market in India has registered an “explosive growth” and is expected to continue the same in the years to come. Introduced in 2000, financial derivatives market in India has shown a remarkable growth both in terms of volumes and numbers of traded contracts. NSE alone accounts for 99 percent of the derivatives trading in Indian markets. The introduction of derivatives has been well received by stock market players. Trading in derivatives gained popularity soon after its introduction.

The two major economic functions of a commodity futures market are price risk management and price discovery. Forward contracting in commodities is an important activity for any economy to meet food and raw material requirements, to facilitate storage as a profitable economic activity and also to manage supply and demand risk. Forward contracts, however, give rise to price risk; so there arises the need of price risk management. Price risk in forward contracts can be managed through futures contracts.

In due course, the turnover of the NSE derivatives market exceeded the turnover of the NSE cash market. For example, in 2008, the value of the NSE derivatives markets was Rs. 130, 90,477.75 Cr. whereas the value of the NSE cash markets was only Rs. 3,551,038 Cr. If we compare the trading figures of NSE and BSE, performance of BSE is not encouraging both in terms of volumes and numbers of contracts traded in all product categories

Among all the products traded on NSE in F& O segment, single stock futures also known as equity futures, are most popular in terms of volumes and number of contract traded, followed by index futures with turnover shares of 52 percent and 31 percent, respectively. In case of BSE, index futures outperform stock futures. An important feature of the derivative segment of NSE which may be observed the huge gap between average daily transactions of its derivatives segment and cash segment. In sharp contrast to NSE, the situation at BSE is just the opposite: its cash segment outperforms the derivatives segment as can be seen.

Despite of encouraging growth and developments, industry analyst feels that the derivatives market has not yet, realized its full potential in terms of growth & trading. Analysts points out that the equity derivative markets on the BSE and NSE has been limited to only four products- index futures, index options and individual stock futures and options, which in turn, are limited to certain select stocks only. Although recently NSE and BSE has added more products in their derivatives segment (Weekly Options, Currency futures, Mini Index etc.) but still it is far less than the depth and variety of products prevailing across many developed capital markets.

LIBOR & MIBOR

LIBOR

The London Interbank Offered Rate (LIBOR) is a benchmark interest rate at which major global banks lend to one another in the international interbank market for short-term loans.

LIBOR, which stands for London Interbank Offered Rate, serves as a globally accepted key benchmark interest rate that indicates borrowing costs between banks. The rate is calculated and will continue to be published each day by the Intercontinental Exchange (ICE), but due to recent scandals and questions around its validity as a benchmark rate, it is being phased out.

According to the Federal Reserve and regulators in the UK, LIBOR will be phased out by June 30, 2023, and will be replaced by the Secured Overnight Financing Rate (SOFR). As part of this phase-out, LIBOR one-week and two-month USD LIBOR rates are no longer published as of Dec. 31, 2021.

LIBOR is the average interest rate at which major global banks borrow from one another. It is based on five currencies including the U.S. dollar, the euro, the British pound, the Japanese yen, and the Swiss franc, and serves seven different maturities overnight/spot next, one week, and one, two, three, six, and 12 months.

The combination of five currencies and seven maturities leads to a total of 35 different LIBOR rates calculated and reported each business day.1 The most commonly quoted rate is the three-month U.S. dollar rate, usually referred to as the current LIBOR rate.

Each day, ICE asks major global banks how much they would charge other banks for short-term loans. The association takes out the highest and lowest figures, then calculates the average from the remaining numbers. This is known as the trimmed average. This rate is posted each morning as the daily rate, so it’s not a static figure. Once the rates for each maturity and currency are calculated and finalized, they are announced and published once a day at around 11:55 a.m. London time by the ICE Benchmark Administration (IBA).

LIBOR is also the basis for consumer loans in countries around the world, so it impacts consumers just as much as it does financial institutions. The interest rates on various credit products such as credit cards, car loans, and adjustable-rate mortgages fluctuate based on the interbank rate. This change in rate helps determine the ease of borrowing between banks and consumers.

But there is a downside to using the LIBOR rate. Even though lower borrowing costs may be attractive to consumers, it does also affect the returns on certain securities. Some mutual funds may be attached to LIBOR, so their yields may drop as LIBOR fluctuates.

MIBOR

The Mumbai Interbank Offer Rate (MIBOR) is one iteration of India’s interbank rate, which is the rate of interest charged by a bank on a short-term loan to another bank. As India’s financial markets have continued to develop, India felt it needed a reference rate for its debt market, which led to the development and introduction of the MIBOR. MIBOR is used in conjunction with the Mumbai interbank bid and forward rates (MIBID and MIFOR) by the central bank of India to set short-term monetary policy.

Banks borrow and lend money to one another on the interbank market in order to maintain appropriate, legal liquidity levels, and to meet reserve requirements placed on them by regulators. Interbank rates are made available only to the largest and most creditworthy financial institutions.

MIBOR is calculated every day by the National Stock Exchange of India (NSEIL) as a weighted average of lending rates of a group of major banks throughout India, on funds lent to first-class borrowers. This is the interest rate at which banks can borrow funds from other banks in the Indian interbank market.

The Mumbai Interbank Offer Rate (MIBOR) is modeled closely on London InterBank Overnight Rate (LIBOR). The rate is used currently for forward contracts and floating-rate debentures. Over time and with more use, MIBOR may become more significant.

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