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Noise-sensitive feedback loop identification in linear time-varying analog circuits

机译:线性时变模拟电路中的噪声敏感反馈回路识别

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The continuing scaling of VLSI technology and design complexity has rendered robustness of analog circuits a significant concern. Parasitic effects may introduce unexpected marginal instability within multiple noise-sensitive loops and hence jeopardize circuit operation and processing precision. The Loop Finder algorithm has been recently proposed to allow detection of noise-sensitive return loops for circuits that are described using a linear time-invariant (LTI) system model. However, many practical circuits such as switched-capacitor filters and mixers present time-varying behaviors which are intrinsically coupled with noise propagation and introduce new noise generation mechanisms. For the first time, we take an in-depth look into the marginal instability of linear periodically time-varying (LPTV) analog circuits and further develop an algorithm for efficient identification of noise-sensitive loops, unifying the solution to noise sensitivity analysis for both LTI and LPTV circuits.
机译:VLSI技术的不断扩展和设计复杂性已使模拟电路的健壮性成为一个重要问题。寄生效应可能会在多个对噪声敏感的环路中引入意想不到的边际不稳定性,从而危及电路工作和处理精度。最近提出了Loop Finder算法,以允许检测使用线性时不变(LTI)系统模型描述的电路的噪声敏感返回回路。但是,许多实用电路(例如,开关电容器滤波器和混频器)呈现出随时间变化的行为,这些行为本质上与噪声传播耦合,并引入了新的噪声生成机制。首次,我们深入研究了线性周期性时变(LPTV)模拟电路的边际不稳定性,并进一步开发了一种有效识别噪声敏感回路的算法,从而统一了两种噪声敏感度分析的解决方案LTI和LPTV电路。

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