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Dynamic Hysteresis Current Control to Minimize Switching for Three-Phase Four-Leg VSI Topology to Compensate Nonlinear Load

机译:动态磁滞电流控制可最大程度地减少三相四柱VSI拓扑的切换,以补偿非线性负载

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摘要

This letter presents a dynamic hysteresis current control algorithm for a three-phase four-leg voltage-source inverter (VSI) topology. In order to improve the performance and life of the power switches of VSI, we require an optimized control technique that reduces its switching frequency. Proposed hysteresis current control method is a generalized control method that minimizes switching operations to compensate nonlinear load under both balanced and unbalanced supply voltages. It is shown that this control scheme is able to reduce the switching frequency by more than 50% compared to conventional hysteresis current control method and retain the quality of load compensation. The effectiveness of the proposed control scheme is illustrated through simulations using Power Systems Computer-Aided Design (PSCAD) 4.2.1.
机译:这封信提出了一种用于三相四脚电压源逆变器(VSI)拓扑的动态磁滞电流控制算法。为了提高VSI电源开关的性能和使用寿命,我们需要一种优化的控制技术,以降低其开关频率。提出的磁滞电流控制方法是一种通用的控制方法,该方法可以最大限度地减少开关操作,以补偿平衡和不平衡电源电压下的非线性负载。结果表明,与传统的磁滞电流控制方法相比,该控制方案能够将开关频率降低50%以上,并保持负载补偿的质量。通过使用Power Systems计算机辅助设计(PSCAD)4.2.1进行的仿真说明了所提出的控制方案的有效性。

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