电工电能新技术
電工電能新技術
전공전능신기술
ADVANCED TECHNOLOGY OF ELECTRICAL ENGINEERING AND ENERGY
2014年
8期
11-14,27
,共5页
统一电能质量控制器%电压暂降%补偿深度%模块化多电平变换器
統一電能質量控製器%電壓暫降%補償深度%模塊化多電平變換器
통일전능질량공제기%전압잠강%보상심도%모괴화다전평변환기
unified power quality conditioner%voltage sag%compensation depth%modular multilevel converter
传统模块化多电平变换器统一电能质量控制器( MMC-UPQC)的串联变压器采用固定变比结构,该结构导致UPQC装置电压暂降补偿深度最大值为固定值,在馈线负荷未达到额定容量时串联变换器不能输出额定容量来补偿电压暂降。为充分利用串联变换器的容量补偿电压暂降,提出了新结构的MMC-UPQC以提高电压暂降补偿深度。分析了传统及新结构MMC-UPQC的电压暂降补偿能力,并通过仿真研究验证了新结构MMC-UPQC的正确性。与传统MMC-UPQC相比,新结构MMC-UPQC在保持装置容量不变的前提下,可分段动态调节电压暂降补偿深度,增大各段馈线负荷容量范围下MMC-UPQC装置的电压暂降能力。
傳統模塊化多電平變換器統一電能質量控製器( MMC-UPQC)的串聯變壓器採用固定變比結構,該結構導緻UPQC裝置電壓暫降補償深度最大值為固定值,在饋線負荷未達到額定容量時串聯變換器不能輸齣額定容量來補償電壓暫降。為充分利用串聯變換器的容量補償電壓暫降,提齣瞭新結構的MMC-UPQC以提高電壓暫降補償深度。分析瞭傳統及新結構MMC-UPQC的電壓暫降補償能力,併通過倣真研究驗證瞭新結構MMC-UPQC的正確性。與傳統MMC-UPQC相比,新結構MMC-UPQC在保持裝置容量不變的前提下,可分段動態調節電壓暫降補償深度,增大各段饋線負荷容量範圍下MMC-UPQC裝置的電壓暫降能力。
전통모괴화다전평변환기통일전능질량공제기( MMC-UPQC)적천련변압기채용고정변비결구,해결구도치UPQC장치전압잠강보상심도최대치위고정치,재궤선부하미체도액정용량시천련변환기불능수출액정용량래보상전압잠강。위충분이용천련변환기적용량보상전압잠강,제출료신결구적MMC-UPQC이제고전압잠강보상심도。분석료전통급신결구MMC-UPQC적전압잠강보상능력,병통과방진연구험증료신결구MMC-UPQC적정학성。여전통MMC-UPQC상비,신결구MMC-UPQC재보지장치용량불변적전제하,가분단동태조절전압잠강보상심도,증대각단궤선부하용량범위하MMC-UPQC장치적전압잠강능력。
Traditional MMC-UPQC uses series transformers with constant transformation ratio structure, which cau-ses a constant maximum voltage sag compensation depth and the series converter cannot utilize its full rated capacity to compensate the voltage sag when the feeder load does not reach its rated capacity. A novel MMC-UPQC is pro-posed to fully utilize the rated capacity of the series converter and increase the voltage sag compensation depth of the MMC-UPQC, in which multi-winding transformer and bidirectional switches are used. Voltage sag compensation ca-pability of the traditional MMC-UPQC and the novel MMC-UPQC are analyzed, which points out the advantage on changing the transformation ratio of the series transformer. Simulations based on the traditional MMC-UPQC and the novel MMC-UPQC are done and the simulation results verify the effectiveness of the novel MMC-UPQC. Compared with the traditional one, novel MMC-UPQC can piecewise dynamically adjusts voltage sag compensation depth and increases the voltage sag compensation capability when the feeder load does not reach its rated capacity without in-creasing the rated capacity of the MMC-UPQC.