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Performance Comparison of Circuits for Pole-Mounted STATCOM Using SiC Devices

机译:使用SiC器件的杆装STATCOM电路的性能比较

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The recent years have seen an increasing trend in the cumulative installed capacity of distributed generators. As a result, voltage management may become difficult in existing power distribution systems in the future. A STATCOM (STAtic synchronous COMpensator) is a promising option for solving this problem because it can control reactive power rapidly and continuously. For a distribution system, STATCOM needs to be pole-mounted to realize its low cost. However, a transformer for a STATCOM is large and heavy, and hence it is difficult to install a STATCOM on a distribution pole. We adopt a transformerless STATCOM to reduce STATCOM size and use SiC devices with low-loss performance to obtain a more compact and efficient STATCOM. There are a large number of circuits available for a STATCOM, and there has been considerable research on performance comparisons among these circuits. However, these comparisons were drawn under different conditions, including switching frequency and level number for the circuits. In addition, these comparisons do not include the use of SiC devices. We made an equitable comparison for a 100 kVa pole-mounted STATCOM using SiC devices. We discuss the performance and characteristics of each circuit in terms of efficiency and volume.
机译:近年来,分布式发电机的累积装机容量呈增长趋势。结果,将来在现有的配电系统中电压管理可能变得困难。 STATCOM(静止同步COMpensator)是解决该问题的有前途的选择,因为它可以快速连续地控制无功功率。对于配电系统,STATCOM需要安装在杆上以实现低成本。然而,用于STATCOM的变压器又大又重,因此很难将STATCOM安装在配电杆上。我们采用无变压器STATCOM来减小STATCOM的尺寸,并使用具有低损耗性能的SiC器件来获得更紧凑和有效的STATCOM。 STATCOM有大量电路可用,并且在这些电路之间的性能比较方面进行了大量研究。但是,这些比较是在不同条件下得出的,包括电路的开关频率和电平数。此外,这些比较不包括使用SiC器件。我们对使用SiC器件的100 kVa杆装STATCOM进行了公平的比较。我们从效率和体积上讨论了每个电路的性能和特性。

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