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Study on DC Component Suppression of Valve-side Current of Static Synchronous Series Compensator

机译:静态同步串联补偿器阀侧电流直流分量抑制的研究

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Synchronous Series Compensator (SSSC), a Flexible Alternating Current Transmission Systems device, is used for the flexible regulation of power system flow, which is of great significance to improve the transmission capacity and stability of the power grid. In engineering applications, system fluctuations, controller accuracy and dynamic adjusting etc. may bring about a slight DC component in the output voltage of SSSC. Since the loop resistance for the DC component is very small, the DC bias of the valve-side current would be significant, which will influence the stability and performance of the control system. Meanwhile, the series transformer and other devices would suffer DC magnetic bias, magnetic saturation of the core, higher loss and even harmonics, threatening the operation of the system. This paper proposes the mechanism that the DC component in the output voltage modulation wave will lead to a DC bias of the current on the SSSC valve-side. The open loop characteristics are simulated. And based on this, a DC component detection and feedback unit is introduced in the original controller to suppress the current DC bias. Finally, according to a SSSC demonstration project, a real-time digital hardware-in-loop simulation model is established and the effectiveness of the suppression strategy is verified.
机译:同步串联补偿器(SSSC)是一种灵活的交流输电系统设备,用于灵活地调节电力系统流量,这对于提高输电能力和电网稳定性具有重要意义。在工程应用中,系统波动,控制器精度和动态调节等可能会在SSSC的输出电压中产生微小的直流分量。由于直流分量的环路电阻非常小,因此阀侧电流的直流偏置会很大,这会影响控制系统的稳定性和性能。同时,串联变压器和其他设备将遭受直流磁偏置,铁芯磁饱和,更高的损耗甚至谐波,从而威胁到系统的运行。本文提出了一种机制,即输出电压调制波中的直流分量将导致SSSC阀侧电流的直流偏置。模拟了开环特性。基于此,在原始控制器中引入了直流分量检测和反馈单元,以抑制当前的直流偏置。最后,根据SSSC示范项目,建立了实时数字硬件在环仿真模型,并验证了抑制策略的有效性。

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