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A Modular Physically Based Approach to the Sound Synthesis of Membrane Percussion Instruments

机译:基于模块化物理方法的膜打击乐器声音合成

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摘要

This paper presents a set of novel physical models for sound synthesis of membrane percussion instruments. First, a model for tension modulation in a struck circular membrane is discussed, which simulates the dynamic variations of partial frequencies occurring at large amplitude vibrations of the membrane. It is shown that the model, which is derived from a more general theory of nonlinear elastic plates, can be efficiently integrated into a modal synthesis engine. Novel models for two relevant sound production mechanisms in membrane percussions are then proposed, i.e., coupling between two membranes through enclosed air in two-headed percussions, and string-membrane coupling. Both are based on a lumped modeling approach and can be straightforwardly connected to the nonlinear membrane model. By virtue of this modular approach, individual elements (circular linear/nonlinear membranes, impact force, membrane coupling through air, string-membrane coupling) can be combined to form different instruments. The acoustic results of the proposed models are demonstrated by means of analysis of numerical simulations.
机译:本文提出了一套新颖的物理模型,用于膜打击乐器的声音合成。首先,讨论了在撞击的圆形膜中进行张力调制的模型,该模型模拟了在膜的大振幅振动时出现的部分频率的动态变化。结果表明,该模型是从更广泛的非线性弹性板理论推导出来的,可以有效地集成到模态综合引擎中。然后提出了膜打击乐中两个相关的声音产生机制的新模型,即通过两头打击乐中的封闭空气通过两个膜之间的耦合以及弦-膜耦合。两者都基于集总建模方法,并且可以直接连接到非线性膜模型。借助这种模块化方法,可以将各个元素(圆形线性/非线性膜,冲击力,通过空气的膜耦合,线膜耦合)组合在一起以形成不同的乐器。通过数值模拟分析,证明了所提出模型的声学结果。

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