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Alternative models for hedging yield curve risk: An empirical comparison

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  • Carcano, Nicola
  • Dall'O, Hakim

Abstract

We test alternative models of yield curve risk by hedging US Treasury bond portfolios through note/bond futures. We show that traditional implementations of models based on principal component analysis, duration vectors and key rate duration lead to high exposure to model errors and to sizable transaction costs, thus lowering the hedging quality. Also, this quality randomly varies from one model and hedging problem to the other. We show that accounting for the variance of modeling errors substantially reduces both hedging errors and transaction costs for all considered models. Additionally, it leads to much more stable weights in the hedging portfolios and - as a result - to more homogeneous hedging quality. On this basis, error-adjusted principal component analysis is found to systematically and significantly outperform alternative models.

Suggested Citation

  • Carcano, Nicola & Dall'O, Hakim, 2011. "Alternative models for hedging yield curve risk: An empirical comparison," Journal of Banking & Finance, Elsevier, vol. 35(11), pages 2991-3000, November.
  • Handle: RePEc:eee:jbfina:v:35:y:2011:i:11:p:2991-3000
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    References listed on IDEAS

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    3. Bessler, Wolfgang & Wolff, Dominik, 2014. "Hedging European government bond portfolios during the recent sovereign debt crisis," Journal of International Financial Markets, Institutions and Money, Elsevier, vol. 33(C), pages 379-399.
    4. Laurini, Márcio Poletti & Ohashi, Alberto, 2015. "A noisy principal component analysis for forward rate curves," European Journal of Operational Research, Elsevier, vol. 246(1), pages 140-153.

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