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首页> 外文期刊>WSEAS Transactions on Circuits and Systems >Design Optimization of Discrete-time Single-Loop Sigma-Delta ADCs via Nonideality and Power Analyses
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Design Optimization of Discrete-time Single-Loop Sigma-Delta ADCs via Nonideality and Power Analyses

机译:基于非理想性和功耗分析的离散时间单环路Sigma-Delta ADC设计优化

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摘要

A conventional ZA ADC design approach is a time consuming process and needs much trials and errors. An optimization algorithm for the discrete-time single-loop LA ADCs design is proposed. Circuit nonideality models are derived in output noise power forms through a systematic circuit imperfection study. A power model is also presented in order to estimate relative power consumption. These models reveal that design parameter variation can potentially affect several noises and errors in different ways, and may change system power consumption. This design complexity is qualitatively summarized into a table. Model completeness allows us to propose an optimization algorithm to search globally for a design parameter combination which meets SNR requirement while minimizing power consumption. Our optimization algorithm is tested against two published design results, and is verified by behavior simulations. Comparisons with behavioral-simulation-based optimization approaches are also made.
机译:传统的ZA ADC设计方法是一个耗时的过程,需要大量的试验和错误。提出了一种用于离散时间单环LA ADC设计的优化算法。通过系统的电路缺陷研究,以输出噪声功率形式导出电路非理想模型。为了估计相对功耗,还提出了功率模型。这些模型表明,设计参数的变化可能以不同的方式影响多种噪声和误差,并可能改变系统功耗。定性地将这种设计复杂性汇总到一个表中。模型的完整性允许我们提出一种优化算法,以在全局范围内搜索满足SNR要求的设计参数组合,同时将功耗降至最低。我们针对两个已发布的设计结果测试了我们的优化算法,并通过行为仿真对其进行了验证。还与基于行为模拟的优化方法进行了比较。

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