Higher-Order Anti-Derivatives of Band Limited Step Functions for the Design of Radial Filters in Spherical Harmonics Expansions

Nara Hahn, Frank Schultz, S. Spors
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引用次数: 4

Abstract

This paper presents a discrete-time model of the spherical harmonics expansion describing a sound field. The so-called radial functions are realized as digital filters, which characterize the spatial impulse responses of the individual harmonic orders. The filter coefficients are derived from the analytical expressions of the time-domain radial functions, which have a finite extent in time. Due to the varying degrees of discontinuities occurring at their edges, a time-domain sampling of the radial functions gives rise to aliasing. In order to reduce the aliasing distortion, the discontinuities are replaced with the higher-order anti-derivatives of a band-limited step function. The improved spectral accuracy is demonstrated by numerical evaluation. The proposed discrete-time sound field model is applicable in broadband applications such as spatial sound reproduction and active noise control.
带限阶跃函数的高阶不定导数用于球面谐波展开中径向滤波器的设计
本文提出了描述声场的球面谐波展开的离散时间模型。所谓的径向函数是通过数字滤波器实现的,它表征了各个谐波阶的空间脉冲响应。滤波器系数由时域径向函数的解析表达式导出,该函数在时间上是有限的。由于在其边缘发生不同程度的不连续,径向函数的时域采样会引起混叠。为了减少混叠失真,用带限阶跃函数的高阶不定导数代替了不连续性。数值计算表明,该方法提高了光谱精度。所提出的离散时间声场模型适用于空间声音再现和主动噪声控制等宽带应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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