We clarify the relations among different Fourier-based approaches to option pricing, and improve the B-spline probability density projection method using the sinh-acceleration technique. This allows us to efficiently separate the control of different sources of errors better than the FFT-based realization allows; in many cases, the CPU time decreases as well. We demonstrate the improvement of the B-spline projection method through several numerical experiments in option pricing, including European and barrier options, where the SINH acceleration technique proves to be robust and accurate.
翻译:我们澄清了不同基于Fourier的备选方案定价方法之间的关系,并用正弦加速技术改进了B-spline概率密度预测方法,这使我们能够有效地区分出不同误差源的控制权,比基于FFFT的实现所允许的更好;在许多情况下,CPU时间也减少;我们通过在选项定价(包括欧洲和屏障选项)方面进行的若干数字实验,显示B-spline预测方法的改进,这些实验证明SINH加速技术是稳健和准确的。