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Digital Waveguide Modeling for Wind Instruments: Building a State–Space Representation Based on the Webster–Lokshin Model

机译:管乐器的数字波导建模:基于Webster-Lokshin模型的状态空间表示

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This paper deals with digital waveguide modeling of wind instruments. It presents the application of state–space representations for the refined acoustic model of Webster–Lokshin. This acoustic model describes the propagation of longitudinal waves in axisymmetric acoustic pipes with a varying cross-section, visco-thermal losses at the walls, and without assuming planar or spherical waves. Moreover, three types of discontinuities of the shape can be taken into account (radius, slope, and curvature). The purpose of this work is to build low-cost digital simulations in the time domain based on the Webster–Lokshin model. First, decomposing a resonator into independent elementary parts and isolating delay operators lead to a Kelly–Lochbaum network of input/output systems and delays. Second, for a systematic assembling of elements, their state–space representations are derived in discrete time. Then, standard tools of automatic control are used to reduce the complexity of digital simulations in the time domain. The method is applied to a real trombone, and results of simulations are presented and compared with measurements. This method seems to be a promising approach in term of modularity, complexity of calculation, and accuracy, for any acoustic resonators based on tubes.
机译:本文涉及管乐器的数字波导建模。它介绍了状态空间表示法在Webster-Lokshin的精细声学模型中的应用。该声学模型描述了纵波在横截面变化的轴对称声管中的传播,壁处的粘热损耗,并且没有假定平面波或球形波。此外,可以考虑形状的三种不连续性(半径,倾斜度和曲率)。这项工作的目的是基于Webster–Lokshin模型在时域中构建低成本的数字仿真。首先,将谐振器分解为独立的基本部分并隔离延迟算符,从而导致输入/输出系统和延迟形成一个Kelly-Lochbaum网络。其次,对于元素的系统组装,它们的状态空间表示是在离散时间内得出的。然后,使用自动控制的标准工具来降低时域数字仿真的复杂性。该方法被应用于真实的长号,并给出了仿真结果并与测量结果进行了比较。对于基于管的任何声谐振器,就模块性,计算复杂性和准确性而言,该方法似乎是一种有前途的方法。

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