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Waveguide Modeling of Lossy Flared Acoustic Pipes: Derivation of a Kelly-Lochbaum Structure for Real-Time Simulations

机译:有损喇叭形声波导管的波导建模:实时仿真的Kelly-Lochbaum结构的推导

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This paper deals with the theory and application of waveguide modeling of lossy flared acoustic pipes. The novelty lies in a refined 1D-acoustic model: the Webster-Lokshin equation. This 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 plane waves or spherical waves. Solving this model for a section of pipe leads to a quadripole made of four transfer functions which imitate the global acoustic effects. Moreover, defining progressive waves and introducing some "relevant" physical interpretations enable the isolation of elementary transfer functions associated with elementary acoustic effects. From this decomposition, a standard Kelly-Lochbaum structure is recovered and efficient low-cost digital simulations are obtained. Thus, this work improves the realism of the sound synthesis of wind instruments, while it preserves waveguide techniques which only involve delay lines and digital filters.
机译:本文讨论了有损喇叭形声管的波导建模的理论和应用。新奇之处在于完善的1D声学模型:Webster-Lokshin方程。该模型描述了纵波在横截面变化的轴对称声管中的传播,壁上的粘热损失,并且不考虑平面波或球面波。解决此模型的一段管道会导致四极杆由四个传递函数组成,这些传递函数模仿了全局声学效果。此外,定义渐进波并引入一些“相关的”物理解释可以隔离与基本声学效应相关的基本传递函数。通过这种分解,可以恢复标准的Kelly-Lochbaum结构并获得有效的低成本数字仿真。因此,这项工作改善了管乐器声音合成的真实性,同时保留了仅包含延迟线和数字滤波器的波导技术。

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