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Grid-synchronization stability improvement of large scale wind farm during severe grid fault

机译:严重电网故障期间大型风电场并网稳定性的提高

摘要

Loss of synchronization between wind farm and power grid during severe grid faults would cause wind farm tripping. In this paper, the mechanism of grid-synchronization is uncovered, described as motion of an autonomous nonlinear differential equation with specific initial states. The revealed mechanism indicates that even though steady state working point exists, improper initial states and poor system dynamic properties could lead to synchronization instability. In order to keep wind farm synchronous with the power grid during severe grid faults, special requirements on system dynamic properties are stated. Moreover, to satisfy all the requirements, a current injecting method is proposed. By adjusting active and reactive output currents of the wind farm, the proposed method could ensure system synchronization stability during severe grid faults. Implementation of the proposed method on PMSG and DFIG based wind farm is illustrated. Simulation results validate the analysis and the control method.
机译:在严重的电网故障期间,风电场与电网之间失去同步会导致风电场跳闸。在本文中,揭示了电网同步的机制,将其描述为具有特定初始状态的自治非线性微分方程的运动。揭示的机制表明,即使存在稳态工作点,但不合适的初始状态和较差的系统动态性能也可能导致同步不稳定。为了在严重的电网故障期间使风电场与电网保持同步,对系统动态特性提出了特殊要求。此外,为了满足所有要求,提出了一种电流注入方法。通过调整风电场的有功和无功输出电流,该方法可以确保严重电网故障时系统同步的稳定性。说明了该方法在基于PMSG和DFIG的风电场中的实现。仿真结果验证了分析和控制方法的正确性。

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