Forecasting the volatility of crude oil futures: A time-dependent weighted least squares with regularization constraint

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Abstract

Parameter instability and model uncertainty are two key problems affecting forecasting outcomes. In this paper, we propose a time-dependent weighted least squares with ridge constraint (TWLS-Ridge) to solve the above two problems in the forecasting procedure. The new TWLS-Ridge approach is applied to the heterogenous autoregressive realized volatility model and its various extensions. The empirical results suggest that TWLS-Ridge produces more accurate volatility forecasts than several alternative models dealing with parameter instability and model uncertainty. The superior performance of TWLS-Ridge is robust under different forecast horizons, evaluation periods, and loss functions. An investor with mean–variance preference can improve utility using TWLS-Ridge forecasts of oil volatility instead of ordinary least squares model forecasts.

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Geng, Q., Hao, X., & Wang, Y. (2024). Forecasting the volatility of crude oil futures: A time-dependent weighted least squares with regularization constraint. Journal of Forecasting, 43(2), 309–325. https://doi.org/10.1002/for.3036

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