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Numerical comparison of different equivalent source models and source quantification techniques for use in sound synthesis systems

机译:用于声音合成系统的不同等效声源模型和声源量化技术的数值比较

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摘要

The aim of sound synthesis methods is to auralize the sound of a physical sound source in the way it is perceived by a listener at a particular location. Most existing synthesis methods start with a source-transmission path - receiver (s-t-r) model to predict spectral characteristics of the sound at the receiver location (e.g. a time-frequency spectrum). To define such a s-t-r model, an adequate representation of the physical sound source is crucial for achieving high quality sound syntheses. In the mid-frequency range, equivalent source models composed of a limited number of elementary substitute sources are usually applied. These equivalent models overcome many of the disadvantages of other sound source reconstruction models. However, quantification of the elementary substitute sources is difficult. After propagation along the transmission path and based upon the predicted spectral characteristics, the sound synthesis methods then synthesize an audible sound at the receiver location. This paper presents a numerical study on the performance of different equivalent source models and quantification techniques. It is shown that the recently developed inverse quantification approach based on acoustic particle velocities can be a fast and sufficient accurate alternative for techniques based on velocity and acceleration on the source surface or on acoustic pressures at indicator positions around the source. Furthermore, guidelines are given to select the number of equivalent substitute sources.
机译:声音合成方法的目的是以听众在特定位置所感知的方式,对物理声源的声音进行听觉化。大多数现有的合成方法都从源-传输路径-接收器(s-t-r)模型开始,以预测声音在接收器位置的频谱特征(例如时间频谱)。为了定义这样的s-t-r模型,物理声源的适当表示对于实现高质量的声音合成至关重要。在中频范围内,通常使用由有限数量的基本替代声源组成的等效声源模型。这些等效模型克服了其他声源重建模型的许多缺点。但是,很难对基本替代来源进行量化。在沿着传输路径传播并基于预测的频谱特性之后,声音合成方法随后在接收器位置合成可听声音。本文对不同等效源模型和量化技术的性能进行了数值研究。结果表明,最近开发的基于声粒子速度的逆量化方法可以快速,足够准确地替代基于震源表面上的速度和加速度或震源周围指示器位置处的声压的技术。此外,给出了选择等效替代来源数量的指南。

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