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Predictive Optimal Matrix Converter Control for a Dynamic Voltage Restorer with Flywheel Energy Storage

机译:带飞轮储能的动态电压恢复器的预测最优矩阵变换器控制

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摘要

This paper presents a predictive optimal matrix converter controller for a flywheel energy storage system used as Dynamic Voltage Restorer (DVR). The flywheel energy storage device is based on a steel seamless tube mounted as a vertical axis flywheel to store kinetic energy. The motor/generator is a Permanent Magnet Synchronous Machine driven by the AC-AC Matrix Converter. The matrix control method uses a discrete-time model of the converter system to predict the expected values of the input and output currents for all the 27 possible vectors generated by the matrix converter. An optimal controller minimizes control errors using a weighted cost functional. The flywheel and control process was tested as a DVR to mitigate voltage sags and swells. Simulation results show that the DVR is able to compensate the critical load voltage without delays, voltage undershoots or overshoots, overcoming the input/output coupling of matrix converters.
机译:本文介绍了一种用作动态电压恢复器(DVR)的飞轮储能系统的预测最优矩阵转换器控制器。飞轮储能装置基于无缝钢管,该无缝钢管安装为垂直轴飞轮以存储动能。电动机/发电机是由AC-AC矩阵转换器驱动的永磁同步电机。矩阵控制方法使用转换器系统的离散时间模型来预测矩阵转换器生成的所有27种可能矢量的输入和输出电流的期望值。最佳控制器使用加权成本函数将控制错误降到最低。飞轮和控制过程作为DVR进行了测试,以减轻电压骤降和骤升。仿真结果表明,DVR能够补偿关键负载电压而不会产生延迟,电压下冲或过冲,从而克服了矩阵转换器的输入/输出耦合。

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