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Research on control strategy of cascade STATCOM under unbalanced system voltage

机译:系统电压不平衡下级联STATCOM控制策略研究

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Depending on faster response time, stronger Var support capacity under low system voltage, and less site area, STATCOM is applied widely in centralized Var compensation of new energy power station such as wind power plant. In the beginning of 2012, China's national standard GB/T 19963-2011 ‘Technical rule for connecting wind farm to power system’ was published, which demand that the wind farm plant should have dynamic Var support capability when grid voltage drops caused by power system's short circuit fault. As we know, single-phase or phase-to-phase sc fault may cause severe three-phase unbalance while grid voltage drop happens. So it's required that STATCOM should be able to work well under grid voltage deep drop. At present, most of STATCOM with multi-level cascading topology adopts well-proved direct current decoupling control strategy, which is designed under balance system, so the following damage occurs under unbalanced condition: 1. The output AC current of STATCOM is unbalanced which results in STACOM's over-current fault; 2. DC capacitor's voltage of STATCOM diverges which results in DC capacitor's over-voltage fault. There for, based on direct current decoupling control, improving and optimizing control strategy against unbalanced system, to achieve sustained working ability under unbalanced system, will expand STATCOM's feasibility greatly, and spread its application area, to play more important role in new energy integration.
机译:依靠更快的响应时间,在低系统电压下更强的Var支持能力以及较小的站点面积,STATCOM被广泛应用于新能源电站(如风电厂)的集中Var补偿。 2012年初,中国发布了国家标准GB / T 19963-2011“风电场与电力系统连接的技术规则”,要求风电场在电力系统的电网电压下降时应具有动态Var支持能力。短路故障。众所周知,单相或相间sc故障可能会导致严重的三相不平衡,同时发生电网电压下降。因此要求STATCOM应该能够在电网电压深度下降的情况下正常工作。目前,大多数采用多级联拓扑结构的STATCOM均采用成熟的直流去耦控制策略,该策略是在平衡系统下设计的,因此在不平衡条件下会发生以下损坏:1. STATCOM的输出交流电流不平衡,导致STACOM的过流故障; 2. STATCOM的直流电容器的电压发散,从而导致直流电容器的过电压故障。为此,在直流去耦控制的基础上,改进和优化针对不平衡系统的控制策略,以实现不平衡系统下的持续工作能力,将大大扩展STATCOM的可行性,扩大其应用范围,在新能源整合中发挥更重要的作用。

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