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Intrinsic Evolution of Analog Circuits on a Programmable Analog Multiplexer Array

机译:可编程模拟多路复用器阵列上模拟电路的内在演变

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This work discusses an Evolvable Hardware (EHW) platform for the intrinsic evolution of analog electronic circuits. The EHW analog platform, named PAMA-NG (Programmable Analog Multiplexer Array-Next Generation), is a reconfigurable platform that consists of integrated circuits whose internal connections can be programmed by Evolutionary Computation techniques, such as Genetic Algorithms (GAs), to synthesize circuits. The PAMA-NG is classified as Field Programmable Analog Array (FPAA). FPAAs are reconfigurable devices that will become the building blocks of a forthcoming class of hardware, with the important features of self-adaptation and self-repairing, through automatic reconfiguration. The PAMA-NG platform architectural details, concepts and characteristics are discussed. Two case studies, with promising results, are described: a logarithmic amplifier and an S membership function circuit of a fuzzy logic controller.
机译:这项工作讨论了模拟电子电路的内在演化的不断变化的硬件(EHW)平台。名为PAMA-NG(可编程模拟多路复用器阵列 - 下一代)的EHW模拟平台是一个可重构的平台,包括集成电路,其内部连接可以通过进化计算技术(例如遗传算法(气体),以合成电路。 。 PAMA-NG被归类为现场可编程模拟阵列(FPAA)。 FPAAS是可重新配置的设备,将成为即将到来的硬件类的构建块,通过自动重新配置,具有自适应和自修复的重要特征。讨论了PAMA-NG平台架构细节,概念和特征。描述了两个案例研究,具有有前途的结果:模糊逻辑控制器的对数放大器和S隶属函数电路。

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