不平衡电网电压下MMC的比例降阶谐振控制策略

当电网电压出现不平衡时,模块化多电平换流器(modular multilevel converter,MMC)型高压直流输电(high current direct current,HVDC)系统的电能传输将受到明显影响。针对该问题,文章首先分析了不平衡故障时MMC的相关内、外特性,指出在不同不平衡控制目标下MMC内部均可能出现零序环流,零序环流流入直流侧将引起直流电压/电流的二倍频波动;然后在αβ坐标系下建立MMC不平衡控制系统,基于比例降阶谐振调节器设计电流内环和环流抑制控制器;仿真结果验证了文章所提出控制策略的有效性。...

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Bibliographic Details
Published in电测与仪表 Vol. 54; no. 2; pp. 38 - 45
Main Author 宋平岗 吴继珍 邹欢
Format Journal Article
LanguageChinese
Published 华东交通大学电气与电子工程学院,南昌,330013 2017
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ISSN1001-1390

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Summary:当电网电压出现不平衡时,模块化多电平换流器(modular multilevel converter,MMC)型高压直流输电(high current direct current,HVDC)系统的电能传输将受到明显影响。针对该问题,文章首先分析了不平衡故障时MMC的相关内、外特性,指出在不同不平衡控制目标下MMC内部均可能出现零序环流,零序环流流入直流侧将引起直流电压/电流的二倍频波动;然后在αβ坐标系下建立MMC不平衡控制系统,基于比例降阶谐振调节器设计电流内环和环流抑制控制器;仿真结果验证了文章所提出控制策略的有效性。
Bibliography:Under unbalanced grid voltage conditions, the power transmission quality of MMC-HVDC ( modular multilevel converter-high current direct current) will be significantly affected. To solve this problem, the correlative inter- nal and external characteristics of MMC are analyzed at first in this paper, and it is indicated that the zero-sequence Circulating current always exists in MMC under different unbalanced control targets, and the twice fundamental har- monic frequency fluctuation of de-link voltage and current will be caused when the zero-sequence circulating current flows into de-side, and then, a control system of MMC under unbalance conditions is built in α-β coordinate system. Both the internal current-loop controller and the circulating current suppressing controller are designed based on pro- portional reduced-order resonant (P-ROR) regulator. It is verified that the proposed strategy is very effective with the simulation results
23-1202/TH
modular multilevel converter ( MMC ), high voltage direct curre
ISSN:1001-1390