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Islanding detection scheme for distributed generation systems using modified reactive power control strategy

机译:基于改进无功控制策略的分布式发电系统孤岛检测方案

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The reactive power control (RPC)-based technique is a promising solution for islanding detection. The existing RPC-based islanding detection techniques have limitations of injecting unwanted reactive power during normal operation, almost same detection time for various percentage of unbalance in load and false detection of islanding for small disturbances when steady-state frequency is close to its threshold limit. To overcome the first limitation, the phase angle (theta) between the actual and nominal point of common coupling (PCC) voltage is added to the reference reactive power signal of the controller. The angle (theta) has zero value during normal system operation and increases prominently after islanding. To obtain proportionately faster detection for various percentage of unbalanced load conditions, the positive sequence PCC voltage is used in the detection scheme. Owing to major power imbalance between generation and load at steady state, the frequency may come close to its threshold. Under this situation, even a small disturbance will drag the frequency beyond threshold and false islanding detection will occur. To overcome this problem, discrete wavelet transform analysis of theta is considered in the decision-making criteria. The proposed scheme is tested for islanding conditions as well as under various non-islanding events.
机译:基于无功功率控制(RPC)的技术是用于孤岛检测的有前途的解决方案。现有的基于RPC的孤岛检测技术具有以下局限性:在正常运行期间会注入不必要的无功功率;对于各种百分比的负载不平衡,检测时间几乎相同;当稳态频率接近其阈值极限时,对于小干扰的错误检测也会出现孤岛检测。为了克服第一个限制,将公共耦合(PCC)电压的实际点和标称点之间的相角(θ)添加到控制器的参考无功功率信号中。在正常系统操作期间,角度θ为零值,并且在孤岛后明显增加。为了成比例地更快地检测各种百分比的不平衡负载情况,在检测方案中使用了正序PCC电压。由于在稳定状态下发电与负载之间的主要功率不平衡,频率可能接近其阈值。在这种情况下,即使很小的干扰也会将频率拖到阈值之上,并且会发生错误的孤岛检测。为了克服这个问题,在决策标准中考虑了θ的离散小波变换分析。所提议的方案针对孤岛条件以及各种非孤岛事件进行了测试。

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