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Automated Design Of Analog Circuits Accelerated By Use Of Simplified Mos Model And Reuse Of Genetic Operations

机译:通过简化的Mos模型和遗传操作的重用加速模拟电路的自动化设计

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摘要

This paper presents an automated design of linear and non-linear differential analog circuits accelerated by reuse of genetic operations. The system first synthesizes circuits using pairs of simplified MOSFET model. During the evolutionary process, genetic operations that improve circuit characteristics are stored in a database and reused to effectively obtain a better circuit. Simplified elements in a generated circuit are replaced by MOSFETs and optimization of the transistor size is performed using an optimizer available in market if necessary. The capability of this method is demonstrated through experiments of synthesis of a differential voltage amplifier, a circuit having cube-law characteristic in differential mode and square-law characteristic in common-mode, and a dB-linear VGA (Variable Gain Amplifier). The results show the reuse of genetic operations accelerates the synthesis and success rate becomes 100%.
机译:本文提出了通过遗传操作的重用加速的线性和非线性差分模拟电路的自动化设计。系统首先使用简化的MOSFET模型对合成电路。在进化过程中,改善电路特性的遗传操作被存储在数据库中,并被重新使用以有效地获得更好的电路。生成的电路中的简化元件被MOSFET取代,必要时使用市场上可买到的优化器对晶体管尺寸进行优化。通过合成差分电压放大器,具有差分模式的立方律特性和共模的平方律特性的电路以及dB线性VGA(可变增益放大器)的实验证明了该方法的能力。结果表明,遗传操作的重用加速了合成,成功率达到了100%。

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