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On the design of high-performance wide-band continuous-time sigma-delta converters using numerical optimization

机译:基于数值优化的高性能宽带连续时间sigma-delta转换器设计

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摘要

Continuous-time (CT) sigma-delta (ΣΔ) modulators are growing increasingly popular in wide-band analog-digital conversion. High orders of quantization noise shaping, and multibit quantizers, are used to compensate for the low oversampling ratios in wide-band applications. These, however, add circuit complexities and excess loop delay that are detrimental to the ΣΔ control loop. This paper presents an exact mathematical analysis technique, based on the CT-discrete time equivalence, that can take these effects into account. A design-by-optimization approach based on that analysis is used to compensate for these effects, avoid intractability issues and to gain flexibility in the design. It is also shown that it is advantageous not to fix the position of the quantization noise-shaping zeros in the signal band.
机译:连续时间(CT)Σ-Δ(ΣΔ)调制器在宽带模数转换中越来越受欢迎。高阶量化噪声整形和多位量化器用于补偿宽带应用中的低过采样率。但是,这些增加了电路复杂度和过多的环路延迟,这对ΣΔ控制环路有害。本文提出了一种精确的数学分析技术,该技术基于CT离散时间等效项,可以考虑这些影响。基于该分析的按优化设计方法可用来补偿这些影响,避免难以解决的问题并获得设计的灵活性。还显示出不固定量化噪声整形零在信号频带中的位置是有利的。

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