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  4. Hedge Ratios: Theory and Applications
 
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Hedge Ratios: Theory and Applications

Part Of
Handbook of Investment Analysis, Portfolio Management, and Financial Derivatives
Journal Volume
2-4
Start Page
1277
End Page
1328
ISBN
9789811269936
9789811269943
Date Issued
2024-04-08
Author(s)
Sheng-Syan Chen  
Cheng Few Lee
Fu-Lai Lin
Keshab Shrestha
DOI
10.1142/9789811269943_0038
DOI
10.1142/9789811269943_0038
URI
https://www.scopus.com/record/display.uri?eid=2-s2.0-85201485572&origin=resultslist
https://scholars.lib.ntu.edu.tw/handle/123456789/722953
Abstract
This chapter first presents a review of various theoretical models and six estimation methods to the optimal futures hedge ratios. Then we use data to show how some of the hedge ratios can be applied to estimate hedge ratio in terms of S&P 500 future. We also show the estimation procedure on how to apply OLS, GARCH, and CECM models to estimate optimal hedge ratios through R language. These approaches are theoretically derived in terms of minimum variance, mean-variance, expected utility, and Value-at-Risk. Various ways of estimating these hedge ratios are also discussed, ranging from simple ordinary least squares to complicated heteroskedastic cointegration methods. Under martingale, jointnormality conditions, and some other conditions, different hedge ratios can be shown that this different ratio can be converted to the minimum variance hedge ratio. Otherwise, the optimal hedge ratios based on the different approaches are in general different. Finally, our empirical findings suggest the importance of capturing the heteroskedastic error structures including the long-run equilibrium error term in conventional regression model.
Subjects
GARCH method
Hedge ratio
Minimum variance hedge ratio
Optimum mean variance hedge ratio
R language
Sharpe hedge ratio
Publisher
World Scientific Publishing Co.
Type
book part

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