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Modeling and analyzing an Optimal Control Method for Parallel Multi-matrix Converter Systems in Intelligent Micro-grid

机译:智能微电网中并联多矩阵换流器系统最优控制方法的建模与分析

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摘要

The parallel connection of multi-system matrix converters is an important technology to ensure the reliable operation of smart grids, and it is one of the hotspots of current research. In this paper, the three-phase power supplies, control module and three-phase to three-phase matrix converter are used as a single system to study the situation that three systems are connected in parallel to supply the same load, and the conditions for multi-system parallel operation are given. Basing on the improved PWM algorithm, a multi-system parallel simulation model is established by using MATLAB. When a system fails and the parameters of the model change, the established model can automatically remove the faulty system, and the remaining two non-faulty systems can still make the load work normally. When two systems fail at the same time, the remaining system can be used to supply power to the load normally, but the corresponding current will increase.
机译:多系统矩阵变换器的并联是确保智能电网可靠运行的重要技术,是当前研究的热点之一。本文将三相电源,控制模块和三相至三相矩阵转换器用作单个系统,以研究三个系统并联连接以提供相同负载的情况以及满足以下条件的条件:给出了多系统并行操作。基于改进的PWM算法,利用MATLAB建立了多系统并行仿真模型。当系统发生故障并且模型的参数发生变化时,已建立的模型可以自动删除故障系统,其余两个非故障系统仍然可以使负载正常工作。当两个系统同时发生故障时,可以使用其余的系统正常地为负载供电,但是相应的电流会增加。

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