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Experimental design and genetic algorithm optimization of a fuzzy-logic supervisor for embedded electrical power systems

机译:嵌入式电力系统模糊逻辑监控器的实验设计和遗传算法优化

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摘要

The embedded power systems are nowadays developing at high pace. Hybrid-electric vehicles, full-electric vehicles, airplanes, ships, high-speed trains, all share a common point - the embedded electrical power system. This paper aims to present an optimization methodology of a fuzzy-logic supervision strategy. The optimization objectives are to minimize the DC-link voltage variations, and to increase the system efficiency by reducing the dissipated power. For that, a methodology involving the experimental design and genetic algorithm will be presented. The simulation and experimental results are validating the proposed procedure.
机译:如今,嵌入式电源系统正在高速发展。混合动力汽车,全电动汽车,飞机,轮船,高速火车都共享一个共同点-嵌入式电力系统。本文旨在提出一种模糊逻辑监督策略的优化方法。优化目标是最小化直流母线电压变化,并通过降低功耗来提高系统效率。为此,将介绍一种涉及实验设计和遗传算法的方法。仿真和实验结果验证了该方法的有效性。

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