2000•RePEc: Research Papers in EconomicsRequires access

SPECIFICATION TESTING OF UNIVARIATE CONTINUOUS-TIME INTEREST RATE MODELS

Renato G. Flres, Cristian Huse

Open publisher page 0 citations

Abstract

We propose a general framework for specification testing of univariate continuous-time stationary interest rate models, as a complement to AÐt-Sahalia (1996) and Pritsker (1998). Based on the Pearson families of distributions [Cramer (1946), Wong (1964)], we define a class of stationary distributions that encompasses many of those in the most used models of the finance literature, such as the Vasicek (1977) and Cox-Ingersoll-Ross (1985) models, among others. By rejecting a general class given by the corresponding differential equation, one can strongly reject the models which are nested within this particular class. This avoids ad hoc choices of interest rate models and the mispricing of interest rate derivative securities. The test statistic consists on a comparison between the nonparametric density estimate and a term combining estimated coefficients of the drift and volatility functions. As the Generalized Method of Moments estimator is unidentified, alternative ways of computing the statistics are developed. Finally, we provide an application of the procedure and discuss its multivariate extensions.

About this research paper

What this paper is about

We propose a general framework for specification testing of univariate continuous-time stationary interest rate models, as a complement to AÐt-Sahalia (1996) and Pritsker (1998). Based on the Pearson families of distributions [Cramer (1946), Wong (1964)], we define a class of stationary distributions that encompasses many of those in the most used models of the finance literature, such as the Vasicek (1977) and Cox-Ingersoll-Ross (1985) models, among others. By rejecting a general class given by the corresponding differential equation, one can strongly reject the models which are nested within this particular class. This avoids ad hoc choices of interest rate models and the mispricing of interest rate derivative securities. The test statistic consists on a comparison between the nonparametric density estimate and a term combining estimated coefficients of the drift and volatility functions. As the Generalized Method of Moments estimator is unidentified, alternative ways of computing the statistics are developed. Finally, we provide an application of the procedure and discuss its multivariate extensions.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

We propose a general framework for specification testing of univariate continuous-time stationary interest rate models, as a complement to AÐt-Sahalia (1996) and Pritsker (1998). Based on the Pearson families of distributions [Cramer (1946), Wong (1964)], we define a class of stationary distributions that encompasses many of those in the most used models of the finance literature, such as the Vasicek (1977) and Cox-Ingersoll-Ross (1985) models, among others. By rejecting a general class given by the corresponding differential equation, one can strongly reject the models which are nested within this particular class. This avoids ad hoc choices of interest rate models and the mispricing of interest rate derivative securities. The test statistic consists on a comparison between the nonparametric density estimate and a term combining estimated coefficients of the drift and volatility functions. As the Generalized Method of Moments estimator is unidentified, alternative ways of computing the statistics are developed. Finally, we provide an application of the procedure and discuss its multivariate extensions.

Key concepts: Vasicek model, Univariate, Econometrics, Estimator, Interest rate, Nonparametric statistics, Statistic, Mathematics

Related papers

Back to paper searchBrowse research topicsOriginal source
SPECIFICATION TESTING OF UNIVARIATE CONTINUOUS-TIME INTEREST RATE MODELS — Research Paper | ScholarLens