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A Pattern-Recognition Approach for Detecting Power Islands Using Transient Signals—Part II: Performance Evaluation

机译:一种使用瞬态信号检测功率岛的模式识别方法-第二部分:性能评估

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摘要

Part I of this paper describes the design and implementation of an islanding detection method based on transient signals. The proposed method utilizes discrete wavelet transform to extract features from transient current and voltage signals. A decision-tree classifier uses the energy content in the wavelet coefficients to distinguish islanding events from other transient generating events. The verification tests performed in Part I, for a two generator test system having a synchronous generator and a wind farm, showed more than 98% classification accuracy with 95% confidence and a response time of less than two cycles. In Part II, the proposed methodology is applied to an extended test system with a voltage-source converter-based dc source. The proposed relay's performance is compared with the existing passive islanding detection methods under different scenarios. Furthermore, the effect of noise on the performance of the proposed method is studied. The transient-based islanding detection methodology exhibits very high reliability and fast response compared to all other passive islanding detection methods and shows that the relay can be designed with a zero nondetection zone for a particular system.
机译:本文的第一部分描述了基于瞬态信号的孤岛检测方法的设计和实现。所提出的方法利用离散小波变换从瞬时电流和电压信号中提取特征。决策树分类器使用小波系数中的能量含量将孤岛事件与其他瞬态生成事件区分开。在第一部分中,针对具有同步发电机和风电场的两发电机测试系统进行的验证测试显示,分类准确度超过98%,置信度为95%,响应时间少于两个周期。在第二部分中,所提出的方法应用于带有基于电压源转换器的直流电源的扩展测试系统。将所提出的继电器的性能与现有的无源孤岛检测方法在不同情况下进行比较。此外,研究了噪声对所提方法性能的影响。与所有其他无源孤岛检测方法相比,基于瞬态的孤岛检测方法具有很高的可靠性和快速响应,并且表明该继电器可以针对特定系统设计为零非检测区。

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