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OPTIMAL DESIGN AND ANALYSIS OF A DC-DC SYNCHRONOUS CONVERTER USING GENETIC ALGORITHM AND SIMULATED ANNEALING

机译:基于遗传算法和模拟退火算法的DC-DC同步变换器的优化设计与分析

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This paper presents the application of Genetic Algorithm (GA) and Simulated Annealing (SA) techniques for optimal design and analysis of a DC-DC converter with synchronous rectification normally used in battery charge/discharge circuits in DC uninterruptible power supply systems. Converter models for simulation are designed for the forward and backup modes of operation. The results are analysed and compared to those of the expected ideal operation to confirm the validity of the models. An objective function of the converter efficiency in the forward mode operation is derived based on the steady-state values of simulation model. A constrained optimization on the objective function is performed using GA and SA, and optimal parameters are derived. The design and analysis of the converter are performed using software tools within the MATLAB/SIMULINK environment for GA. The derived optimal parameters of the converter from GA are compared with those obtained with SA technique.
机译:本文介绍了遗传算法(GA)和模拟退火(SA)技术在通常用于DC不间断电源系统中的电池充电/放电电路的具有同步整流的DC-DC转换器的优化设计和分析中的应用。用于仿真的转换器模型设计用于正向和备用操作模式。分析结果并将其与预期理想操作的结果进行比较,以确认模型的有效性。基于仿真模型的稳态值,得出了正向模式下转换器效率的目标函数。使用GA和SA对目标函数进行约束优化,并得出最佳参数。转换器的设计和分析是通过用于GA的MATLAB / SIMULINK环境中的软件工具执行的。将GA导出的转换器最佳参数与SA技术获得的最佳参数进行比较。

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