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Multiobjective Optimal Design of Photovoltaic Synchronous Boost Converters Assessing Efficiency, Reliability, and Cost Savings

机译:评估效率,可靠性和成本节省的光伏同步升压转换器的多目标优化设计

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Optimal design of switching converters for the integration and optimal exploitation of renewable energy sources (RES) represents a crucial issue often debated in the recent power electronics literature. The design problem required to carry out a multiobjective optimization characterized by simultaneous conflicting objectives, such as efficiency, reliability, and price, where the best compromise solution should be found by the decision maker among Pareto-optimal solutions. In this paper, a novel design method for distributed maximum power point tracking (DMPPT) synchronous boost converter is proposed. The method is based on nondominated sorting genetic algorithm with the aim to obtain the best synchronous rectification (SR) boost topology while considering different targets such as converter efficiency and reliability maximization, as well as converter price minimization. New weighted indices are also proposed for a more realistic characterization of the devices.
机译:集成和优化利用可再生能源(RES)的开关转换器的优化设计代表了最近电力电子文献中经常争论的一个关键问题。设计问题需要执行以同时发生冲突的目标(例如效率,可靠性和价格)为特征的多目标优化,决策者应在帕累托最优解决方案中找到最佳折衷解决方案。本文提出了一种新的分布式最大功率点跟踪(DMPPT)同步升压转换器设计方法。该方法基于非支配排序遗传算法,旨在获得最佳同步整流(SR)升压拓扑,同时考虑不同目标,例如转换器效率和可靠性最大化,以及转换器价格最小化。还提出了新的加权指数,以更真实地表征设备。

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