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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Voltage Support Control Strategies for Static Synchronous Compensators Under Unbalanced Voltage Sags
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Voltage Support Control Strategies for Static Synchronous Compensators Under Unbalanced Voltage Sags

机译:不平衡电压骤降下静态同步补偿器的电压支持控制策略

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Static synchronous compensators have been broadly employed for the provision of electrical ac network services, which include voltage regulation, network balance, and stability improvement. Several studies of such compensators have also been conducted to improve the ac network operation during unbalanced voltage sags. This paper presents a complete control scheme intended for synchronous compensators operating under these abnormal network conditions. In particular, this control scheme introduces two contributions: a novel reactive current reference generator and a new voltage support control loop. The current reference generator has as a main feature the capacity to supply the required reactive current even when the voltage drops in amplitude during the voltage sag. Thus, a safe system operation is easily guaranteed by fixing the limit required current to the maximum rated current. The voltage control loop is able to implement several control strategies by setting two voltage set points. In this paper, three voltage support control strategies are proposed, and their advantages and limitations are discussed in detail. The two theoretical contributions of this paper have been validated by experimental results. Certainly, the topic of voltage support is open for further research, and the control scheme proposed in this paper can be viewed as an interesting configuration to devise other control strategies in future works.
机译:静态同步补偿器已广泛用于提供交流电网络服务,其中包括电压调节,网络平衡和稳定性改善。还对这种补偿器进行了一些研究,以改善不平衡电压骤降期间的交流网络运行。本文提出了一种针对在这些异常网络条件下运行的同步补偿器的完整控制方案。特别地,该控制方案引入了两个贡献:新颖的无功电流基准发生器和新的电压支持控制回路。电流基准发生器的主要特征是即使在电压骤降期间电压幅度下降时也能够提供所需的无功电流。因此,通过将所需的极限电流固定为最大额定电流,可以轻松保证系统的安全运行。电压控制回路可以通过设置两个电压设定点来实施多种控制策略。本文提出了三种电压支持控制策略,并详细讨论了它们的优缺点。实验结果验证了本文的两个理论贡献。当然,电压支持的话题是有待进一步研究的,本文提出的控制方案可以看作是在未来工作中设计其他控制策略的有趣配置。

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