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Control Design of a Three-Phase Matrix-Converter-Based AC–AC Mobile Utility Power Supply

机译:基于三相矩阵转换器的AC-AC移动公用电源的控制设计

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This paper describes the control analysis and design of an ac-to-ac three-phase mobile utility power supply using a matrix converter capable of high-quality 50-, 60-, and 400-Hz output voltage and reduced input harmonic distortion. Instead of the traditional structure employing a diode bridge rectifier, a dc link and a pulsewidth-modulated inverter, a three-phase-to-three-phase direct ac–ac (matrix) converter has been used as the power-conditioning core of the system, working in conjunction with input and output LC low-pass filters. An optimizing control design method using a genetic algorithm approach has been used, which yields designs to minimize a cost function, taking into account transient and steady-state output voltage performance targets, together with robustness to different operative conditions and system parameters drift. Simulation and experimental tests have demonstrated that the system meets the power-quality requirements of the application.
机译:本文介绍了使用矩阵转换器的交流到交流三相移动市电电源的控制分析和设计,该转换器具有高质量的50、60和400 Hz输出电压,并且可以降低输入谐波失真。代替采用二极管桥式整流器,直流链路和脉宽调制逆变器的传统结构,三相至三相直接交流-交流(矩阵)转换器已被用作功率调节核心。系统,与输入和输出LC低通滤波器配合使用。使用了一种使用遗传算法方法的优化控制设计方法,该方法的设计考虑了瞬态和稳态输出电压性能目标,以及对不同工作条件和系统参数漂移的鲁棒性,从而使成本函数最小化。仿真和实验测试表明,该系统满足了应用程序的电能质量要求。

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