A novel system-level modeling and design approach for high performance single-loop sigma-delta (∑Δ) modulators

IF 0.8 Q4 ROBOTICS
S. Vamsee Krishna, P. Sudhakara Reddy, S. Chandra Mohan Reddy
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引用次数: 0

Abstract

PurposeThis paper attempted a novel approach for system-level modeling and simulation of sigma-delta modulator for low-frequency CMOS integrated analog to digital interfaces. Comparative analysis of various architectures topologies, circuit implementation techniques are described with analytical procedure for effective selection of topologies for targeted specifications.Design/methodology/approachVirtual instruments are presented in labview environment to analyze the correlation of circuit-level non-ideal effects with key design parameters over sampling ratio, coarse quantizer bits and loop filter order. A fourth-order single-loop sigma-delta modulator is designed and verified in MATLAB simulink environment with careful selection of integrator weights to meet stable desired performance.FindingsThe proposed designed achieved SNDR of 122 dB and 20 bit resolution satisfying high-resolution requirements of low-frequency biomedical signal processing applications. Even though the simulation performed at behavioral level, the results obtained are considered as accurate, by including all non-ideal and non-linear circuit errors in simulation process.Originality/valueVirtual instruments using labview environment used to analyze the correlation of circuit-level non-ideal effects with key design parameters over sampling ratio, coarse quantizer bits and loop filter order for accurate design.
一种新的高性能单环∑Δ调制器系统级建模与设计方法
目的本文尝试了一种新的方法来对低频CMOS集成模数接口的∑-Δ调制器进行系统级建模和仿真。对各种架构拓扑结构、电路实现技术的比较分析,以及为目标规范有效选择拓扑结构的分析过程进行了描述。设计/方法论/方法在labview环境中使用虚拟仪器来分析电路级非理想效应与关键设计参数在采样率、粗量化器位和环路滤波器阶数上的相关性。设计了一种四阶单环∑-Δ调制器,并在MATLAB simulink环境中进行了验证,仔细选择了积分器权重,以满足稳定的期望性能。发现所提出的设计实现了122dB的SNDR和20位的分辨率,满足了低频生物医学信号处理应用的高分辨率要求。即使在行为层面上进行了模拟,通过在模拟过程中包括所有非理想和非线性电路误差,所获得的结果也被认为是准确的。独创性/价值使用labview环境的虚拟仪器用于分析电路级非理想效应与关键设计参数在采样率、粗量化器位和环路滤波器阶数方面的相关性,以实现准确的设计。
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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来源期刊
CiteScore
3.50
自引率
0.00%
发文量
21
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