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The Coordinated Control Strategy of Doubly-fed Induction Generators With an Energy Storage Dynamic Voltage Restorer for Low Voltage Ride Through

机译:通过储能动态电压恢复器进行双馈诱导发电机的协调控制策略,用于低电压骑行

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In the process of grid connection of wind power, in order to ensure the failure of the grid to recover the fault recovery bus voltage as soon as possible, the wind turbine must have a certain voltage ride through capability. Aiming at this problem, a strategy of realizing low voltage ride through (LVRT) by using super capacitor based dynamic voltage restorer (SCDVR) energy storage and doubly-fed induction generators (DFIG) is proposed. When the grid voltage fails, the active power that each of the dynamic voltage restorer (DVR) and the DFIG needs to absorb is distributed through a proportional coordination control strategy. Making full use of the compensation ability of DVR and wind turbine rotor rotational kinetic energy to ensure the grid voltage stability is constant and the wind turbines can be sustained parallel operation. The validity of the coordinated control strategy is verified by the simulation results. Numerical example results show that the coordinated control strategy can reduce the capacity and power of the dynamic voltage restorer, which is of great significance in engineering application.
机译:在风电网连接的过程中,为了确保网格的故障尽快恢复故障恢复母线电压,风力涡轮机必须具有一定的电压通过能力。针对这个问题,提出了一种通过使用基于超级电容的动态电压恢复器(SCDVR)能量存储和双馈感应发电机(DFIG)来实现低电压乘坐(LVRT)的策略。当电网电压发生故障时,通过比例协调控制策略分发每个动态电压恢复器(DVR)和DFIG需要吸收的有效功率。充分利用DVR和风力涡轮机转子旋转动能的补偿能力,以确保电网电压稳定性是恒定的,风力涡轮机可以持续平行操作。通过模拟结果验证了协调控制策略的有效性。数值示例结果表明,协调控制策略可以降低动态电压恢复器的容量和功率,在工程应用中具有重要意义。

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