Switched-current filter optimization based on evolutionary algorithms

Lukas Dolivka, J. Hospodka
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引用次数: 1

Abstract

This paper describes a way to eliminate the effect of circuit nonidealities on the magnitude frequency response of a circuit utilizing the switched-current technique. The circuit realizes a band-pass filter. The elimination is carried out by optimization based on one of evolutionary algorithms - the differential evolution. The nonidealities are nonzero on-state resistance of the switches and nonzero output conductance of the field-effect transistors implementing the current sources. It is shown that the filter with the current source transconductance values designed according to a common method for ideal components has a significantly different magnitude frequency response when the nonidealities are considered. Hence, the optimization is applied to finding suitable transconductance values so that the difference between the magnitude frequency responses of the ideal and nonideal filter is minimized.
基于进化算法的开关电流滤波器优化
本文介绍了一种利用开关电流技术消除电路非理想性对电路幅频响应影响的方法。该电路实现了一个带通滤波器。该算法基于一种进化算法——差分进化算法进行优化。非理想性是开关的导通电阻非零和实现电流源的场效应晶体管的输出电导非零。结果表明,当考虑非理想性时,采用理想元件通用方法设计的电流源跨导值滤波器具有显著不同的幅值频率响应。因此,优化应用于寻找合适的跨导值,使理想滤波器和非理想滤波器的幅频响应之差最小。
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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