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A Compensation Power Control Strategy for DFIG and PMSG in a Wind-PV-Hydro Hybrid System

机译:Wind-PV-Hydro混合系统中DFIG和PMSG的补偿功率控制策略

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When a short-term power fluctuation caused by photovoltaic (PV) array occurs in a wind-PV-hydro hybrid system, the traditional hydro generator cannot suppress the fluctuation perfectly. The reason is that its response speed is not as fast as that of the stored energy unit equipped with electronic devices. However, the wind turbine based on either doubly fed induction wind generator (DFIG) or permanent magnetic synchronous generator (PMSG) has the advantage of a quicker regulation speed and the kinetic energy stored in the rotor can be used to quickly compensate the short-term power fluctuation. This paper proposes a new approach to take advantage of the rapidity of wind turbine to improve the stability of total output in a hybrid system. In the active power control loop of DFIG and PMSG, the deviation of total output to be compensated is added to the reference of power output, so that the wind turbine can adjust its output according to the fluctuation of total output, which consequently can stabilize the output. Case studies under different system operation conditions are presented, and the results show that the proposed control strategy can make the output more stable, which verifies the effectiveness.
机译:当风力-光伏-水电混合系统中发生由光伏(PV)阵列引起的短期电力波动时,传统的水力发电机无法完美地抑制波动。原因是其响应速度不及配备电子设备的储能单元的响应速度。但是,基于双馈感应风力发电机(DFIG)或永磁同步发电机(PMSG)的风力涡轮机具有调节速度更快的优点,并且可以将存储在转子中的动能用于快速补偿短期功率波动。本文提出了一种利用风力涡轮机的快速性来提高混合系统总输出稳定性的新方法。在DFIG和PMSG的有功功率控制回路中,要补偿的总输出的偏差被添加到功率输出的参考值中,以便风力涡轮机可以根据总输出的波动来调整其输出,从而可以使输出稳定。输出。给出了不同系统运行条件下的案例研究,结果表明所提出的控制策略可以使输出更加稳定,验证了其有效性。

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