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Modeling of Islanding Detection by Sensing Jump Change of Harmonic Voltage at PCC by the Combination of a Narrow Band-pass Filter and Wavelet Analysis

机译:通过窄带通滤波器和小波分析的组合测量PCC谐波电压跳跃变化的建模

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This paper presents a full code-based implementation of islanding detection using a narrow band-pass filter together with a wavelet filter in Simulink environment. Topology of local distribution generation is modeled by a grid-tied inverter with LCL filter. Proportional resonant controller is adopted to control the inverter. Narrow band-pass filter has been designed to effectively extract fundamental component of all signals. Islanding occurrence has been simulated by the opening of a breaker and its detection has been implemented by two methods, one being based on detecting specific harmonic voltage change at the point of common coupling before and after islanding by using a narrow band pass filter, and the other being based on a wavelet filter which detects a jump change of a band of harmonic voltage. All of these are implemented using code in Simulink environment. The advantage and disadvantages of these two methods are compared. It is found that the wavelet is more capable of producing more consistent results after islanding occurrence but it may cause mal-operation at start-up. By combining the narrow-band pass filtering and wavelet approaches, one can reach error-free islanding detection and protection.
机译:本文介绍了使用窄带通滤波器以及在Simulink环境中的小波滤波器一起使用窄带通道滤波器的全基于代码的实施。局部分布生成的拓扑由网格逆变器与LCL滤波器进行建模。采用比例谐振控制器控制逆变器。窄带通滤波器旨在有效地提取所有信号的基本组件。通过打开断路器的开口模拟孤岛发生并通过两种方法实现了其检测,基于通过使用窄带通滤波器之前和之后的公共耦合点的特定谐波电压变化。其他基于小波滤波器,该小波滤波器检测谐波电压带的跳跃变化。所有这些都是在Simulink环境中使用代码实现的。比较这两种方法的优点和缺点。结果发现,小波更能在岛屿发生后产生更一致的结果,但它可能在启动时导致错误操作。通过组合窄带通过滤波和小波方法,可以达到无差错的岛屿检测和保护。

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