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Cascaded Multilevel Converter-Based Transmission STATCOM: System Design Methodology and Development of a 12 kV ±12 MVAr Power Stage

机译:基于级联多电平转换器的传输STATCOM:系统设计方法和12 kV±12 MVAr功率级的开发

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This paper deals with the design methodology for cascaded multilevel converter (CMC)-based transmission-type STATCOM (T-STATCOM) and the development of a ±12 MVAR, 12?kV line-to-line wye-connected, 11-level CMC. Sizing of the CMC module, the number of H-bridges (HBs) in each phase of the CMC, ac voltage rating of the CMC, the number of paralleled CMC modules in the T-STATCOM system, the optimum value of series filter reactors, and the determination of busbar in the power grid to which the T-STATCOM system is going to be connected are also discussed in this paper in view of the IEEE Std. 519-1992, current status of high voltage (HV) insulated gate bipolar transistor (IGBT) technology, and the required reactive power variation range for the T-STATCOM application. In the field prototype of the CMC module, the ac voltages are approximated to sinusoidal waves by the selective harmonic elimination method (SHEM). The equalization of dc-link capacitor voltages is achieved according to the modified selective swapping (MSS) algorithm. In this study, an L-shaped laminated bus has been designed and the HV IGBT driver circuit has been modified for the optimum switching performance of HV IGBT modules in each HB. The laboratory and field performances of the CMC module and of the resulting T-STATCOM system are found to be satisfactory and quite consistent with the design objectives.
机译:本文探讨了基于级联多电平转换器(CMC)的传输型STATCOM(T-STATCOM)的设计方法以及±12 MVAR,12?kV线对线星形连接的11级CMC的开发。 CMC模块的尺寸,CMC每个相中的H桥(HB)数量,CMC的交流额定电压,T-STATCOM系统中并联的CMC模块的数量,串联滤波电抗器的最佳值,本文还根据IEEE Std讨论了T-STATCOM系统将要连接到的电网中的母线的确定。 519-1992年,高压(HV)绝缘栅双极晶体管(IGBT)技术的当前状态,以及T-STATCOM应用所需的无功功率变化范围。在CMC模块的现场原型中,通过选择性谐波消除方法(SHEM)将交流电压近似为正弦波。根据修改后的选择性交换(MSS)算法,可以实现直流链路电容器电压的均衡。在这项研究中,设计了一个L形叠层总线,并对HV IGBT驱动器电路进行了修改,以使每个HB中的HV IGBT模块具有最佳的开关性能。发现CMC模块和所得的T-STATCOM系统的实验室和现场性能令人满意,并且与设计目标相当一致。

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