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Construct Smith-Wilson risk-free interest rate curves with endogenous and positive ultimate forward rates

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  • Zhao, Chaoyi
  • Jia, Zijian
  • Wu, Lan

Abstract

We propose several methods for obtaining endogenous and positive ultimate forward rates (UFRs) for risk-free interest rate curves based on the Smith-Wilson method. The Smith-Wilson method, which is adopted by Solvency II, can both interpolate the market price data and extrapolate to the UFR. However, the method requires an exogenously-chosen UFR. To obtain an endogenous UFR, de Kort and Vellekoop (2016) proposed an optimization framework based on the Smith-Wilson method. In this paper, we prove the existence of an optimal endogenous UFR to their optimization problem under the condition that the cash flow matrix is square and invertible. In addition, to ensure the positivity of the optimal endogenous UFR during extreme time periods such as the COVID-19 pandemic, we extend their optimization framework by including non-negative constraints. Furthermore, we also propose a new optimization framework that can not only generate endogenous and positive UFRs but also incorporate practitioners' prior knowledge. We prove the feasibility of our frameworks, and conduct empirical studies for both the Chinese government bonds and the EURIBOR swaps to illustrate the capabilities of our methods.

Suggested Citation

  • Zhao, Chaoyi & Jia, Zijian & Wu, Lan, 2024. "Construct Smith-Wilson risk-free interest rate curves with endogenous and positive ultimate forward rates," Insurance: Mathematics and Economics, Elsevier, vol. 114(C), pages 156-175.
  • Handle: RePEc:eee:insuma:v:114:y:2024:i:c:p:156-175
    DOI: 10.1016/j.insmatheco.2023.11.003
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    References listed on IDEAS

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    1. Lars E.O. Svensson, 1994. "Estimating and Interpreting Forward Interest Rates: Sweden 1992 - 1994," NBER Working Papers 4871, National Bureau of Economic Research, Inc.
    2. Mr. Luis Brandao-Marques & Mr. Roland Meeks & Gunes Kamber, 2021. "Negative Interest Rates: Taking Stock of the Experience So Far," IMF Departmental Papers / Policy Papers 2021/003, International Monetary Fund.
    3. Lagerås, Andreas & Lindholm, Mathias, 2016. "Issues with the Smith–Wilson method," Insurance: Mathematics and Economics, Elsevier, vol. 71(C), pages 93-102.
    4. Svensson, Lars E O, 1994. "Estimating and Interpreting Forward Interest Rates: Sweden 1992-4," CEPR Discussion Papers 1051, C.E.P.R. Discussion Papers.
    5. Hull, John & White, Alan, 1990. "Pricing Interest-Rate-Derivative Securities," The Review of Financial Studies, Society for Financial Studies, vol. 3(4), pages 573-592.
    6. Derrick W. H. Fung & David Jou & Ai Ju Shao & Jason J. H. Yeh, 2018. "The China Risk-Oriented Solvency System: A Comparative Assessment with Other Risk-Based Supervisory Frameworks," The Geneva Papers on Risk and Insurance - Issues and Practice, Palgrave Macmillan;The Geneva Association, vol. 43(1), pages 16-36, January.
    7. David Heath & Robert Jarrow & Andrew Morton, 2008. "Bond Pricing And The Term Structure Of Interest Rates: A New Methodology For Contingent Claims Valuation," World Scientific Book Chapters, in: Financial Derivatives Pricing Selected Works of Robert Jarrow, chapter 13, pages 277-305, World Scientific Publishing Co. Pte. Ltd..
    8. Nelson, Charles R & Siegel, Andrew F, 1987. "Parsimonious Modeling of Yield Curves," The Journal of Business, University of Chicago Press, vol. 60(4), pages 473-489, October.
    9. Patrick Hagan & Graeme West, 2006. "Interpolation Methods for Curve Construction," Applied Mathematical Finance, Taylor & Francis Journals, vol. 13(2), pages 89-129.
    10. Jørgensen, Peter Løchte, 2018. "An analysis of the Solvency II regulatory framework’s Smith-Wilson model for the term structure of risk-free interest rates," Journal of Banking & Finance, Elsevier, vol. 97(C), pages 219-237.
    11. de Kort, J. & Vellekoop, M.H., 2016. "Term structure extrapolation and asymptotic forward rates," Insurance: Mathematics and Economics, Elsevier, vol. 67(C), pages 107-119.
    12. Andreas Lager{aa}s & Mathias Lindholm, 2016. "Issues with the Smith-Wilson method," Papers 1602.02011, arXiv.org.
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    More about this item

    Keywords

    Ultimate forward rate (UFR); Smith-Wilson method; Risk-free interest rate curve; Endogenous and positive; Solvency II; Chinese government bond; EURIBOR swap;
    All these keywords.

    JEL classification:

    • L51 - Industrial Organization - - Regulation and Industrial Policy - - - Economics of Regulation
    • E4 - Macroeconomics and Monetary Economics - - Money and Interest Rates

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