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Radiation of a Pulsating Portion of a Sphere: Application to Horn Radiation

机译:球面脉动部分的辐射:在角辐射中的应用

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摘要

This paper introduces the modelling of the radiation of a sphere, part of which, S_0, is pulsating with an uniform velocity while the other remains motionless. Velocity and pressure can be expressed analytically in the space outside the sphere using spherical harmonic decomposition. The radiation impedance can then be deduced, providing a model approximating the radiation of horns, accounting for the curvature of the wavefront. The angular dependence of the radiation impedance is eliminated by averaging on S_0 to remain compatible with most of simplified models of horns whose equations depend on a unique space variable. This averaging provides an analytical expression representing the optimal approximation, minimizing the mean square error. Three simple parametric models, which are inexpensive to simulate and approximate this model of impedance with various precisions, are proposed. They are well adapted to real-time applications, such as the simulation of wind instruments. Their parameters are given according to the geometrical characteristics of So and the stability is checked. The error introduced by these models is negligible compared to the original due to averaging on S_0.
机译:本文介绍了一个球体辐射的建模,其中一部分S_0以均匀的速度脉动,而另一个保持静止。速度和压力可以使用球谐分解在球体外部空间中解析表示。然后可以推导辐射阻抗,从而提供一个近似于喇叭辐射的模型,并考虑了波前的曲率。通过对S_0求平均值,可以消除辐射阻抗的角度依赖性,从而与大多数简化的号角模型兼容,这些号角的方程取决于唯一的空间变量。该平均提供了表示最佳近似的解析表达式,从而使均方误差最小。提出了三个简单的参数模型,这些模型对于以各种精度模拟和近似该阻抗模型而言并不昂贵。它们非常适合实时应用,例如管乐器的仿真。根据So的几何特性给出其参数,并检查稳定性。由于对S_0求平均值,因此与原始模型相比,这些模型引入的误差可以忽略不计。

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