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Power swing and voltage stabilization by PV generator with active and reactive power controls

机译:通过带有有功和无功功率控制的PV发电机实现功率摆幅和电压稳定

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Undamped power and voltage swings of synchronous generators due to severe disturbances may make power systems unstable. To tackle this problem, this paper proposes a control scheme of active and reactive power outputs of a photovoltaic (PV) generator equipped with power oscillation dampers (PODs). The PODs with second-order lead/lag structure are installed in the active and reactive power control loops of the PV. The POD parameters in both control loops are simultaneously optimized so that the power and voltage swings are minimized. Solving the optimization problem by the particle swarm optimization, the optimal parameters of PODs can be automatically achieved. Simulation study demonstrates that the stabilizing performance of the PV with the optimal POD is superior to that of the PV with the non-optimal POD against various power flow levels and severe faults.
机译:同步发电机由于严重干扰而导致的功率和电压波动不会导致功率系统不稳定。为了解决这个问题,本文提出了一种装有功率振荡阻尼器(POD)的光伏(PV)发电机的有功和无功输出控制方案。具有二阶超前/滞后结构的POD安装在PV的有功和无功功率控制回路中。同时优化两个控制回路中的POD参数,以使功率和电压摆幅最小。通过粒子群算法解决优化问题,可以自动实现PODs的最优参数。仿真研究表明,对于各种潮流水平和严重故障,具有最佳POD的PV的稳定性能要优于具有非最佳POD的PV的稳定性能。

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