An Overall Control of Doubly fed Variable Speed Pumped Storage Unit in Pumping Mode

Dinglin Li, G. Gong, Jingliang Lv, Xinjian Jiang, Rufei He
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引用次数: 1

Abstract

Doubly fed induction machine(DFIM) has excellent speed regulation performance, which can meet the demand of frequency and voltage regulation of power grid and solve the problem of efficiency reduction of pump-turbine resulting from the change of hydraulic head when applied to pumped storage. To omit the drainage process of runner chamber before DFIM start-up, a control method of soft-starting with slight load is proposed which ensures that the speed of DFIM increases smoothly from zero to the required for gridconnection. The field current compensator and rotor position angle compensator are designed to improve the control accuracy for grid-connection. The operation characteristic curve of pump-turbine and the output of grid frequency controller are considered comprehensively to achieve the load optimal regulative. With the methods mentioned above, an overall control strategy of doubly fed variable speed pumped storage unit in pumping mode is proposed, as well as the control flow. The control strategy is simulated in MATLAB and implemented on a towing unit platform. Results of simulation and experiment verified the effectiveness of the proposed strategy, including soft-start with light-load, grid-connection with no inrush current and speed regulation.
双馈变速抽水蓄能机组在抽水模式下的整体控制
双馈感应电机(DFIM)具有优良的调速性能,既能满足电网调频调压的要求,又能解决抽水蓄能中水头变化导致的水泵水轮机效率降低的问题。为了省去DFIM启动前流道腔的排水过程,提出了一种轻负荷软启动控制方法,使DFIM的速度从零平稳增加到并网所需的速度。为了提高并网控制精度,设计了励磁电流补偿器和转子位置角补偿器。综合考虑了水泵水轮机的运行特性曲线和电网变频控制器的输出,实现了负荷的最优调节。利用上述方法,提出了双馈变速抽水蓄能机组在抽水模式下的总体控制策略,并给出了控制流程。在MATLAB中对该控制策略进行了仿真,并在拖曳单元平台上实现了该控制策略。仿真和实验结果验证了该策略在轻负荷软启动、无涌流并网和调速等方面的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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