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Dynamic Optimal AC Line Current Regulation Method for Three-Phase Active Power Conditioners

机译:三相有功功率调节器的动态最优交流线路电流调节方法

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The main feature of the three-phase back-to-back active power conditioner (APC) is to improve the power quality of the microgrid. During the large power variation transient, the severe voltage surge/sag on the dc-link of the APC may cause its malfunction. Therefore, the dynamic optimal ac line current regulation (DOCR) with flexible dc-link voltage slope (FDVS) is proposed in this paper. The proposed DOCR can determine the accurate input current reference value to regulate the dc-link voltage under the large power variation condition. On the other hand, the proposed FDVS can further mitigate the dc-link voltage variation during the large power variation transient. The mathematical equations of the proposed control strategy are derived thoroughly. Furthermore, procedures to determine the dc-link capacitance with the proposed DOCR are developed. Finally, the experimental results obtained from a 5-kVA back-to-back APC verify the feasibility and the performance of the proposed line current regulation strategies.
机译:三相背对背有功功率调节器(APC)的主要功能是提高微电网的电能质量。在大功率变化瞬态期间,APC直流链路上的严重电涌/骤降可能会导致其故障。因此,本文提出了具有灵活的直流母线电压斜率(FDVS)的动态最优交流线路电流调节(DOCR)。提出的DOCR可以确定准确的输入电流参考值,以在大功率变化条件下调节直流链路电压。另一方面,提出的FDVS可以在大功率变化瞬态期间进一步减轻直流链路电压变化。彻底推导了所提出的控制策略的数学方程。此外,开发了用建议的DOCR确定直流链路电容的程序。最后,从5 kVA背对背APC获得的实验结果证明了所提出的线路电流调节策略的可行性和性能。

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