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June 29, 2026International Journal of Computational Methods0 citations

Modified cubic B-spline based differential quadrature method for solving generalized Black Scholes equation

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VNV. NizamudheenNANoufal AsharafTRTK Riyasudheen

Key Points

  • This research aims to develop a numerical method using modified cubic B-splines for solving the generalized Black-Scholes equation.
  • Applied differential quadrature method with modified cubic B-splines for spatial discretization.
  • Employed SSPRK54 and generalized trapezoidal formula for time integration.
  • Validated through several test problems and ensured computational stability.
  • Achieved effective numerical solutions for the generalized Black-Scholes equation.
  • Demonstrated improved computational stability and performance compared to traditional methods.

Abstract

This article presents the use of differential quadrature method based on modified cubic B-splines for obtaining the numerical solution of generalized Black-Scholes equation. The generalized Black-Scholes equation is transformed to a time progressing non-degenerate equation by logarithmic transformation and the transformed setup is spatially discretized using differential quadrature method. The time integration of the corresponding ODE system is executed with SSPRK54 and generalized trapezoidal formula (GTF). Several test problems are examined for the validation of theoretical results. The numerical experiments are compared and computational stability of the system is also ensured.

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Cite This Study

Nizamudheen et al. (2026) studied this question.

synapsesocial.com/papers/6a420adff91bb43ea91921abhttps://doi.org/10.1142/s0219876226500465
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