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Design and Implementation of a 154-kV 50-Mvar Transmission STATCOM Based on 21-Level Cascaded Multilevel Converter

机译:基于21级串联多电平变换器的154kV 50Mvar输电STATCOM的设计与实现。

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In this research work, the design and implementation of a 154-kV $pm$ 50-Mvar transmission static synchronous compensator (T-STATCOM) have been carried out primarily for the purposes of reactive power compensation and terminal voltage regulation and secondarily for power system stability. The implemented T-STATCOM consists of five 10.5-kV $pm$12-Mvar cascaded multilevel converter (CMC) modules operating in parallel. The power stage of each CMC is composed of five series-connected H-bridges (HBs) in each phase, thus resulting in 21-level line-to-line voltages. Due to modularity and flexibility of implemented HBs, each CMC module has reached a power density of 250 $hbox{kvar/m}^{3}$, thus making the mobility of the system implementable. DC-link capacitor voltages of HBs are perfectly balanced by means of the modified selective swapping algorithm proposed. The field tests carried out at full load in the 154-kV transformer substation where T-STATCOM is installed have shown that the steady-state and transient responses of the system are quite satisfactory.
机译:在这项研究工作中,主要用于无功补偿和终端电压调节的目的,其次是用于电力系统的154 kV $ pm $ 50-Mvar传输静态同步补偿器(T-STATCOM)的设计和实现。稳定性。实施的T-STATCOM由五个并行运行的10.5kV $ pm $ 12-Mvar级联多电平转换器(CMC)模块组成。每个CMC的功率级在每个相中都包含五个串联的H桥(HB),因此产生21级的线间电压。由于已实现的HBs的模块化和灵活性,每个CMC模块的功率密度已达到250 $ hbox {kvar / m} ^ {3} $,从而使系统的可移动性得以实现。 HBs的直流链路电容器电压通过提出的改进的选择性交换算法完美平衡。在安装了T-STATCOM的154 kV变电站的满负荷下进行的现场测试表明,系统的稳态和瞬态响应都令人满意。

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