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An Optimized Device Sizing of Analog Circuits using Particle Swarm Optimization

机译:利用粒子群算法优化模拟电路的器件尺寸

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Problem statement: Day by day more and more products rely on analog circuits to improve the speed and reduce the power consumption(Products rely on analog circuits to improve the speed and reduce the power consumption day by day more and more.)- For the VLSI implementation analog circuit design plays an important role. This analog circuit synthesis might be the most challenging and time-consumed task, because it does not only consist of topology and layout synthesis but also of component sizing. Approach: A Particle Swarm Optimization (PSO) technique for the optimal design of analog circuits. Analog signal processing finds many applications and widely uses OpAmp based amplifiers, mixers, comparators, and filters. Results: A two-stage opamp (Miller Operational Trans-conductance Amplifier (OTA)) is considered for the synthesis that satisfies certain design specifications. Performance has been evaluated with the Simulation Program with Integrated Circuit Emphasis (SPICE) circuit simulator until optimal sizes of the transistors are found. Conclusion: The output of the simulation for the two-stage opamp shows that the PSO technique is an accurate and promising approach in determining the device sizes in an analog circuit.
机译:问题陈述:越来越多的产品越来越依赖模拟电路来提高速度并降低功耗(产品越来越依赖模拟电路来提高速度并日益降低功耗。)-对于VLSI实现模拟电路设计起着重要作用。这种模拟电路综合可能是最具挑战性和耗时的任务,因为它不仅包括拓扑和布局综合,而且还包括组件尺寸确定。方法:粒子群优化(PSO)技术用于模拟电路的最佳设计。模拟信号处理有许多应用,并广泛使用基于OpAmp的放大器,混频器,比较器和滤波器。结果:考虑到满足某些设计规范的综合考虑,采用两级运算放大器(米勒运算跨导放大器(OTA))。性能已通过带有集成电路重点的仿真程序(SPICE)电路仿真器进行了评估,直到找到最佳晶体管尺寸为止。结论:两级运算放大器的仿真输出表明,PSO技术是确定模拟电路中器件尺寸的一种准确而有前途的方法。

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