Simulation of distributed contact in string instruments: A modal expansion approach

M. V. Walstijn, J. Bridges
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引用次数: 18

Abstract

Impactive contact between a vibrating string and a barrier is a strongly nonlinear phenomenon that presents several challenges in the design of numerical models for simulation and sound synthesis of musical string instruments. These are addressed here by applying Hamiltonian methods to incorporate distributed contact forces into a modal framework for discrete-time simulation of the dynamics of a stiff, damped string. The resulting algorithms have spectral accuracy, are unconditionally stable, and require solving a multivariate nonlinear equation that is guaranteed to have a unique solution. Exemplifying results are presented and discussed in terms of accuracy, convergence, and spurious high-frequency oscillations.
弦乐器中分布接触的模拟:模态展开方法
振动弦与障碍物之间的冲击接触是一种强烈的非线性现象,它给弦乐器的仿真和声音合成的数值模型设计带来了一些挑战。本文通过应用哈密顿方法将分布式接触力纳入模态框架,对刚性阻尼弦的动力学进行离散时间模拟,来解决这些问题。所得到的算法具有谱精度,无条件稳定,并且需要求解一个保证有唯一解的多元非线性方程。举例结果提出,并在精度,收敛性和伪高频振荡方面进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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