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用于声音合成的新型带通波导模型拓扑结构的推导。

Derivation of a new banded waveguide model topology for sound synthesis.

机构信息

School of Arts, Media and Engineering, SenSIP Center, School of Electrical, Computer and Energy Engineering, Arizona State University, Tempe, Arizona 85287, USA.

出版信息

J Acoust Soc Am. 2013 Feb;133(2):EL76-81. doi: 10.1121/1.4773287.

Abstract

Banded waveguide (BWG) synthesis is an efficient method for real-time physical modeling of dispersive and multidimensional sounding objects, affording simulation of complex interactions, such as bowing. Current implementations, however, use nonphysical design parameters and produce a range of outputs that do not match equivalently designed modal and digital waveguide (DWG) models. This letter proposes a new topology for implementing BWG models without arbitrary parameters. The impulse response of the proposed model is identical to that of equivalent Karplus-Strong type and lumped modal models. Test of a nonlinear bi-directional bowed-string model demonstrates improved attack characteristics relative to prior BWG models.

摘要

带通波导(BWG)综合是一种用于实时模拟色散和多维发声物体的有效方法,可模拟复杂的相互作用,如弓状弯曲。然而,当前的实现方法使用非物理设计参数,并产生一系列与等效设计的模态和数字波导(DWG)模型不匹配的输出。本文提出了一种新的拓扑结构,用于实现没有任意参数的 BWG 模型。所提出模型的冲激响应与等效的 Karplus-Strong 类型和集中模态模型相同。对非线性双向弯曲弦模型的测试表明,与之前的 BWG 模型相比,其攻击特性得到了改善。

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