Heuristic finite-impulse-response filter design for cascaded ΣΔ modulators with finite amplifier gain

Y. Chou, Chun-Chen Lin, Hsin-Liang Chen, Jen-Shiun Chiang
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Abstract

This study addresses a new digital calibration filter design for cascaded ΣΔ modulators with finite amplifier gain. A recent approach based on the H-infinity loop shaping method to this problem has the merit of obviating the use of an estimation or adaptive digital correction scheme, which thus reduces the complexity of circuit implementation. For the approach to be successful, it is critical to find an appropriate weighting function so as to make the gain responses of the uncertain noise transfer function (NTF) in a proper shape for improving signal-to-noise ratio (SNR). However, the search of such a weighting function is difficult in general. Moreover, the introduced weighting function increases filter order and hence circuit complexity. To circumvent this difficulty and the inherited drawbacks, this study presents a new noise shaping method for the problem. Considering that it is hard to decide the optimal shape of the uncertain NTF a priori, the authors propose a dual-band design to achieve the shape adjustment task. In particular, the range of lower frequency band is determined by SNR performance evaluation rather than being arbitrarily given a priori. This step is crucial and increases the chance of finding a better filter.
有限放大器增益级联ΣΔ调制器的启发式有限脉冲响应滤波器设计
本研究针对具有有限放大器增益的级联ΣΔ调制器提出一种新的数字校准滤波器设计。最近一种基于h∞环整形法的方法解决了这一问题,其优点是避免了使用估计或自适应数字校正方案,从而降低了电路实现的复杂性。该方法的成功关键在于找到合适的加权函数,使不确定噪声传递函数(NTF)的增益响应具有合适的形状,从而提高信噪比(SNR)。然而,这种加权函数的搜索通常是困难的。此外,引入的加权函数增加了滤波器的阶数,从而增加了电路的复杂度。为了克服这一困难和固有的缺陷,本研究提出了一种新的噪声整形方法。考虑到不确定NTF的最佳形状难以先验确定,作者提出了一种双波段设计来实现形状调整任务。特别是,较低频段的范围是由信噪比性能评估确定的,而不是任意给定的先验。这一步是至关重要的,增加了找到更好的过滤器的机会。
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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