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Grid synchronization of variable speed pump-turbine units in turbine mode

机译:涡轮机模式下变速泵 - 汽轮机单元的电网同步

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The S-shaped characteristics of the pump-turbine may cause instability and thus leads to difficulties in grid synchronization. This paper develops a complete model for a pumped storage power plant and studies the start-up and grid synchronization procedure of two 300 MW variable speed units at no load in turbine mode. Based on the grid-voltage-oriented vector control method, the stator voltage of the doubly-fed induction machine is controlled to meet the grid connection requirements. Compared with the fixed speed units, the simulation results show that for a pump-turbine with typical S-shaped characteristics, the fixed speed unit cannot meet the grid connection requirements due to the unstable unit speed. Whereas, the variable speed unit can quickly reach synchronization with the grid voltage. For a pump-turbine without typical S-shaped characteristics, the synchronous unit can meet the grid connection requirements, but it takes a longer time and the stator voltage is not stable enough, while the variable speed unit is 11 times faster and more stable. The effects of PI parameters on the synchronization process of a variable speed unit are also studied. The results show that with suitable PI control parameters, the synchronization process can be accelerated without large overshoot of the rotor power.(c) 2021 Elsevier Ltd. All rights reserved.
机译:泵涡轮机的S形特性可能导致稳定性,从而导致电网同步的困难。本文开发了一个完整的泵送存储电厂模型,并在涡轮模式下无负载研究两个300 MW变速单元的启动和电网同步过程。基于基于网格电压导向的矢量控制方法,控制双馈电机的定子电压以满足网格连接要求。与固定速度单位相比,仿真结果表明,对于具有典型S形特性的泵涡轮机,固定速度单元由于不稳定的单位速度而不能满足网格连接要求。鉴于变速单元可以快速达到与电网电压同步。对于没有典型的S形特性的泵涡轮机,同步单元可以满足网格连接要求,但需要更长的时间,定子电压不够稳定,而变速单元速度快11倍,更稳定。研究了PI参数对变速单元同步过程的影响。结果表明,通过合适的PI控制参数,可以加速同步过程而不会大的转子电源过高。(c)2021 Elsevier Ltd.保留所有权利。

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