串联电压源变换器的双矢量控制

H. Awad, J. Svensson
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引用次数: 29

摘要

电压源变换器与电网串联,作为静态串联补偿器(SSC)适用于保护敏感负载免受输入电源干扰,如电压下降。动态性能的SSC是非常重要的,因为它是必不可少的开始补偿电压下降没有合理的延迟。本文提出了一种双矢量控制算法,以改善其动态性能。该算法将电流控制器和电压控制器结合在一起,采用内电流控制环和外电压控制环。通过PSCAD/EMTDC仿真,当电网遭受对称三相电压下降时,该算法的有效性得到了验证。仿真结果证明,与序列分量相量和均方根计算等传统控制概念相比,该算法能够改善SSC的瞬态响应。
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Double vector control for series connected voltage source converters
The voltage source converter, connected in series with the grid, as a static series compensator (SSC) is suited to protect sensitive loads against incoming supply disturbances such as voltage dips. Dynamic performance of the SSC is very important since it is essential to start compensation for voltage sags without a sensible delay. This paper proposes a double-vector control algorithm to be implemented to the SSC to improve its dynamic performance. The proposed algorithm incorporates both current and voltage controllers with an inner current control loop and outer voltage control loop. The validity of the proposed algorithm has been demonstrated through a PSCAD/EMTDC simulation, when the grid is subjected to a symmetrical three-phase voltage dip. Simulation results have proved that the proposed algorithm is able to improve the transient response of the SSC, compared to traditional control concepts, such as concepts related to phasors of the sequence components and RMS calculations.
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