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Loop-Filter Design and Analysis for Delta-Sigma Modulators and Oversampled IIR Filters

机译:Delta-Sigma调制器和过采样IIR滤波器的环路滤波器设计与分析

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Delta-sigma modulators spectrally shape quantization noise in discrete systems and are used extensively in communications and signal-processing systems. They are implemented using a loop-filter that processes the input and feed-back signals such that the closed loop behavior has a separate signal transfer function (STF) and noise transfer function (NTF). Loop-filter design often relies on special cases for the NTF or simplified loop-filter structures. This paper presents a method for generalized loop-filter synthesis that can implement a chosen NTF and STF independent of internal loop-filter structure or filter order. The transfer functions are formulated as polynomials of integration, (z - 1)-n, instead of delay, z-n, to enable practical numerical loop-filter synthesis even for high-order and highly oversampled loop-filters. An example design shows how to use this synthesis method to design a high-order modulator that directly filters and re-modulates a direct stream digital audio signal.
机译:Δ-Σ调制器在离散系统中对量化噪声进行频谱整形,并广泛用于通信和信号处理系统中。它们使用处理输入和反馈信号的环路滤波器来实现,从而使闭环行为具有单独的信号传递函数(STF)和噪声传递函数(NTF)。环路滤波器设计通常依赖于NTF或简化的环路滤波器结构的特殊情况。本文提出了一种通用的环路滤波器综合方法,该方法可以独立于内部环路滤波器结构或滤波器阶数实现所选的NTF和STF。传递函数被公式化为积分多项式,(z-1) n -n,而不是延迟,而是z n -n n,即使对于高阶和高度过采样的环路滤波器。一个示例设计显示了如何使用这种合成方法来设计一个直接对直接流数字音频信号进行滤波和重新调制的高阶调制器。

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