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Research of 3-phase Reversible Rectifier Based on Current Hysteresis Regulator

机译:基于电流滞后调节器的三相可逆整流器研究

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According to the control requirement and actual project condition of three-phase high power factor rectifier, for the sake of eliminating inconstant switching frequency in the converter that brought on rather serious power supply harmonic pollution and shock damage of power devices and reducing difficulty of filter circuit design, based on these problems the constant switching frequency control algorithm adopting current hysteresis regulator was put forward. It combines their respective advance of current hysteresis control and constant switching frequency strategy, enhanced the system's dynamic response and well robust character, and minimized its switching loss. In terms of simulation results analysis, and construction of an experimental prototype based on DSP TMS320F2812, both of them verified the validity and superiority of the proposed algorithm.
机译:根据三相高功率因数整流器的控制要求和实际项目条件,为消除了转换器中的不稳定开关频率,带来了相当严重的电源谐波污染和功率器件冲击损伤,减少了滤波器电路的难度基于这些问题的设计提出了采用电流滞后调节器的恒定开关频率控制算法。它结合了当前滞后控制和恒定开关频率策略的各自进展,增强了系统的动态响应和良好的稳健性,并最大限度地减少了其开关损耗。在仿真结果分析和基于DSP TMS320F2812的实验原型的构造方面,它们都验证了所提出的算法的有效性和优越性。

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