任意阶IIR不定积分抗混叠

Pier Paolo La Pastina, Stefano D'Angelo, L. Gabrielli
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引用次数: 2

摘要

非线性数字电路和波形整形是活跃的研究领域,特别是涉及数值和混叠问题。过去提出了一种有效的基于非线性函数的不定积分对非线性静态函数进行离散化并减少混叠的方法。这种方法是基于连续时间卷积与FIR抗混叠滤波器核,如矩形核。然而,这些内核在减少混叠方面还远远不够理想。在本文中,我们介绍了任意IIR有理传递函数的使用,它允许在对非线性函数输出采样之前在虚构的连续时域中更接近理想的抗混叠滤波器。这些允许更高程度的混叠减少,并可以灵活调整,以平衡性能和计算成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Arbitrary-Order IIR Antiderivative Antialiasing
Nonlinear digital circuits and waveshaping are active areas of study, specifically for what concerns numerical and aliasing issues. In the past, an effective method was proposed to discretize nonlinear static functions with reduced aliasing based on the antiderivative of the nonlinear function. Such a method is based on the continuous-time convolution with an FIR antialiasing filter kernel, such as a rectangular kernel. These kernels, however, are far from optimal for the reduction of aliasing. In this paper we introduce the use of arbitrary IIR rational transfer functions that allow a closer approximation of the ideal antialiasing filter, required in the fictitious continuous-time domain before sampling the nonlinear function output. These allow a higher degree of aliasing reduction and can be flexibly adjusted to balance performance and computational cost.
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