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Evolving diversified redundancies for robust analog circuits under uncertain component-drifts

机译:在不确定的组件漂移下,在强大的模拟电路时不断变化的冗余

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With the increasing use of electronic equipments in uncertain environments, robustness and reliability become more and more important for analog circuits. Uncertain influences may cause uncertain component-drifts in analog components. This paper proposes a new idea to enhance the reliability of analog circuits under uncertain component-drifts. Diversified redundancies are adopted and an evolving model with regularly diversifying strategy is proposed. The regularly diversifying strategy decouples the correlations of the redundancies. Experimental results show that, regularly diversified redundancies designed by this paper perform more steadily in the simulation of uncertain component-drifts compared with single module or duplicated redundancies. Although the proposed idea is a primary exploration towards robust analog circuit evolving in uncertain-environment, it is demonstrated to be a promising way of robust analog-circuit design towards uncertain component-drifts.
机译:随着电子设备在不确定的环境中越来越多地利用,鲁棒性和可靠性对模拟电路变得越来越重要。不确定的影响可能导致模拟成分中不确定的组分漂移。本文提出了一种新的想法,可以在不确定的组分漂移下提高模拟电路的可靠性。提出了采用多元化冗余,提出了具有定期多样化战略的不断变化的模式。定期多样化的策略与冗余的相关性解脱出来。实验结果表明,由于单模块或重复的冗余,本文规则设计的定期多元化的冗余更稳定地执行不确定的组件漂移。虽然所提出的思想是对不确定环境中不确定的鲁棒模拟电路的初步探索,但它被证明是对不确定组件漂移的强大模拟电路设计的有希望的方式。

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