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New topologies of PCS applied to large-scale battery energy storage system

机译:适用于大型电池储能系统的PC的新拓扑

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After large-scale wind power and photovoltaic power is connected with the grid, the inherent intermittent and volatility of wind power and photovoltaic power adversely affects the security and stability of the grid. So, researches on the appropriate technology of large-scale battery energy storage system are very important. Power Conversion System (PCS) is an important component of the battery energy storage system. The article respectively makes a comparative analysis of the two parts of PCS — the converter and the filter. Combined with existing battery technology, articles that compared with traditional converter which contains the DC / DC link and DC / AC link, the converter which only contains a DC / AC link and the converter that contains the Z-source network and DC / AC link, have a higher energy conversion efficiency, and they are easy to control; compared with the traditional L filter and LC filter, the LCL filter can suppress high harmonics better, reduce the inductance value effectively, improve the dynamic performance of the system, and be less affected by the grid. Combined with analysis conclusion, the article concludes with two new PCS topologies.
机译:大型风电和光伏电源与电网连接后,风电和光伏电源的固有间歇性和波动性对网格的安全性和稳定性产生了不利影响。因此,对大型电池储能系统的适当技术的研究非常重要。电源转换系统(PCS)是电池储能系统的重要组成部分。本文分别对PC的两部分进行了比较分析 - 转换器和过滤器。结合现有电池技术,与包含DC / DC链路和DC / AC链路的传统转换器相比的文章,该转换器仅包含DC / AC链路和包含Z源网络和DC / AC链路的转换器,具有更高的能量转换效率,它们易于控制;与传统的L滤波器和LC滤波器相比,LCL过滤器可以更好地抑制高谐波,有效降低电感值,提高系统的动态性能,并受电网的影响。结合分析结论,该文章结束了两种新的PC拓扑。

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