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Idealized digital models for conical reed instruments, with focus on the internal pressure waveform

机译:锥形簧片乐器的理想数字模型,着重于内部压力波形

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摘要

Two models for the generation of self-oscillations of reed conical woodwinds are presented. The models use the fewest parameters (of either the resonator or the exciter), whose influence can be quickly explored. The formulation extends iterated maps obtained for lossless cylindrical pipes without reed dynamics. It uses spherical wave variables in idealized resonators, with one parameter more than for cylinders: the missing length of the cone. The mouthpiece volume equals that of the missing part of the cone, and is implemented as either a cylindrical pipe (first model) or a lumped element (second model). Only the first model adds a length parameter for the mouthpiece and leads to the solving of an implicit equation. For the second model, any shape of nonlinear characteristic can be directly considered. The complex characteristic impedance for spherical waves requires sampling times smaller than a round trip in the resonator. The convergence of the two models is shown when the length of the cylindrical mouthpiece tends to zero. The waveform is in semi-quantitative agreement with experiment. It is concluded that the oscillations of the positive episode of the mouthpiece pressure are related to the length of the missing part, not to the reed dynamics. (C) 2016 Acoustical Society of America.
机译:提出了两种用于产生芦苇圆锥形木管风自振的模型。这些模型使用最少的参数(谐振器或激励器),可以快速探究其影响。该公式扩展了无损耗圆柱管的迭代图,而没有簧片动力学。它在理想化的谐振器中使用球面波变量,其参数比圆柱体大:锥的缺失长度。烟嘴的体积等于锥体缺失部分的体积,并被实现为圆柱管(第一模型)或集总元件(第二模型)。只有第一个模型为吹嘴添加了长度参数,并导致了隐式方程的求解。对于第二个模型,可以直接考虑非线性特征的任何形状。球形波的复数特征阻抗要求采样时间小于谐振器中的往返行程。当圆柱形吹嘴的长度趋于零时,显示了两个模型的收敛性。波形与实验呈半定量一致。结论是,吹口压力正向的波动与缺失部分的长度有关,而不与簧片动力学有关。 (C)2016年美国声学学会。

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