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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Predictive Harmonic Control and Its Optimal Digital Implementation for MMC-Based Active Power Filter
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Predictive Harmonic Control and Its Optimal Digital Implementation for MMC-Based Active Power Filter

机译:基于MMC的有源电力滤波器的谐波预测控制及其优化数字实现

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摘要

An optimal active power filter (APF) based on modular multilevel converter (MMC) without load current and lower arm current sensors is proposed. Its control algorithm mainly includes predictive harmonic current control, fundamental frequency control, and dc voltage control. Comparing to direct current control, the first two subcontrollers transfer the harmonic and fundamental active/reactive power current to voltage references, which are suitable to generate the modulation signals to MMCs as well as two-level converters. Their full digital optimization structures combined with the MMC voltage and current control are detail discussed and implemented on field programmable gate array. The synthesis result indicates a low hardware resource utilization and calculation delay of the designed controller. The experimental results on an MMC-based APF prototype verified the static and dynamic performances of the proposed algorithm.
机译:提出了一种基于模块化多电平转换器(MMC),无负载电流和下臂电流传感器的最优有源功率滤波器(APF)。其控制算法主要包括预测谐波电流控制,基频控制和直流电压控制。与直流控制相比,前两个子控制器将谐波电流和基波有功/无功功率电流转换为参考电压,这些参考电压适合于向MMC以及两级转换器生成调制信号。详细讨论了它们的全数字优化结构,并结合了MMC电压和电流控制,并在现场可编程门阵列上实现。综合结果表明,所设计控制器的硬件资源利用率和计算延迟较低。在基于MMC的APF原型上的实验结果验证了所提出算法的静态和动态性能。

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