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Reactive power control for distributed generation power plants to comply with voltage limits during grid faults

机译:分布式发电厂的无功功率控制,以符合电网故障期间的电压限制

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摘要

Grid faults are one of the most severe problems for network operation. Distributed generation power plants can help to mitigate the adverse effects of these perturbations by injecting reactive power during the sag and the post-fault operation. Thus, the risk of cascade disconnection and voltage collapse can be reduced. The proposed reactive power control is intended to regulate the maximum and minimum phase voltages at the point of common coupling within the limits established in grid codes for continuous operation. In balanced three-phase voltage sags, the control increases the voltage in each phase above the lower regulated limit by injecting positive sequence reactive power. In unbalanced voltage sags, positive and negative sequence reactive powers are combined to flexibly raise and equalize the phase voltages; maximum phase voltage is regulated below the upper limit and the minimum phase voltage just above the lower limit. The proposed control strategy is tested by considering a distant grid fault and a large grid impedance. Selected experimental results are reported in order to validate the behavior of the control scheme.
机译:电网故障是网络运行中最严重的问题之一。分布式发电厂可以在下垂和故障后操作期间注入无功功率,从而有助于减轻这些干扰的不利影响。因此,可以降低级联断开和电压崩溃的风险。拟议的无功功率控制旨在将公共耦合点上的最大和最小相电压调节在电网规范规定的连续运行限制内。在平衡的三相电压骤降中,控制系统通过注入正序无功功率将每相的电压提高到调节下限以上。在不平衡的电压骤降中,正序和负序无功功率被组合以灵活地提高和均衡相电压。最大相电压调节在上限以下,最小相电压调节在下限以上。通过考虑远程电网故障和较大的电网阻抗来测试所提出的控制策略。报告选定的实验结果,以验证控制方案的行为。

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