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首页> 外文期刊>IEEE Transactions on Circuits and Systems >Stability criterion for lateral inhibition and related networks that is robust in the presence of integrated circuit parasitics
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Stability criterion for lateral inhibition and related networks that is robust in the presence of integrated circuit parasitics

机译:横向抑制和相关网络的稳定性标准,在存在集成电路寄生效应的情况下很稳定

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摘要

In the analog VLSI implementation of neural systems, it is sometimes convenient to build lateral inhibition networks by using a locally connected on-chip resistive grid. A serious problem of unwanted spontaneous oscillation often arises with these circuits and renders them unusable in practice. A design approach is reported that guarantees such a system will be stable, even though the values of designed elements in the resistive grid may be imprecise and the location and values of parasitic elements may be unknown. The method is based on a mathematical analysis using Tellegen's theorem and the Popov criterion. The criteria are local in the sense that no overall analysis of the interconnected system is required for their use, empirical in the sense that they involve only measurable frequency response data on the individual cells, and robust in the sense that they are not affected by unmodeled parasitic resistances and capacitances in the interconnect network.
机译:在神经系统的模拟VLSI实现中,有时通过使用本地连接的片上电阻网格来构建横向抑制网络是很方便的。这些电路经常会出现严重的不希望的自发振荡问题,使它们在实践中无法使用。据报道,有一种设计方法可以保证这样的系统稳定,即使电阻网格中设计元素的值可能不精确,并且寄生元素的位置和值也可能未知。该方法基于使用Tellegen定理和Popov准则的数学分析。从某种意义上说,标准是局部的,不需要对互连系统进行整体分析;从经验上说,它们是针对单个小区的仅可测量的频率响应数据;从经验上来讲,它们是不受模型化影响的稳健性。互连网络中的寄生电阻和电容。

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