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An embedded voltage harmonic compensation strategy for current controlled DG interfacing converters

机译:电流控制DG接口转换器的嵌入式电压谐波补偿策略

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摘要

Harmonics have been considered as one of the major issues in future power grids. With the increasing demand in advanced control functions, power electronic converter interfaced Distributed Generators (DGs) are expected to perform harmonic compensation when necessary. It has been demonstrated in a number of studies that DG converters operating in Voltage-Controlled Mode (VCM) can be easily configured to realize voltage harmonic suppression utilizing naturally embedded voltage control loop. While for DG converters operating in Current-Controlled Mode (CCM), such function was rarely studied. Considering that CCM is commonly used in renewable energy based generators and energy storage systems, it has certain significance to achieve the same function with CCM operated converters. Aiming at such objective, this paper proposes a voltage detection based embedded Harmonic Compensator (HC) for CCM converters. The novelty and main advantages of the proposed method include: it realizes seamless interface of HC with inner fundamental current control loop; compared with conventional active power filtering method, it does not require remote load harmonic current measurement since it is based on local voltage detection; compared with conventional voltage detection based method, it offers better performance because of direct harmonic voltage regulation. Experimental results are presented to demonstrate the effectiveness of the method.
机译:谐波已被认为是未来电网的主要问题之一。随着对高级控制功能的需求不断增长,预计在必要时,与功率电子转换器接口的分布式发电机(DG)可以执行谐波补偿。在许多研究中已经证明,以电压控制模式(VCM)运行的DG转换器可以很容易地配置为利用自然嵌入的电压控制环路来实现电压谐波抑制。对于在电流控制模式(CCM)下运行的DG转换器,很少研究这种功能。考虑到CCM通常用于基于可再生能源的发电机和储能系统中,对于与CCM操作的转换器实现相同的功能具有一定的意义。针对这一目标,本文提出了一种用于CCM转换器的基于电压检测的嵌入式谐波补偿器(HC)。该方法的新颖性和主要优点包括:它实现了HC与内部基本电流控制环路的无缝接口;与传统的有功功率滤波方法相比,它基于本地电压检测,因此不需要远程负载谐波电流测量;与传统的基于电压检测的方法相比,由于直接谐波电压调节,它提供了更好的性能。实验结果表明了该方法的有效性。

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