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Design and comparison of active frequency drifting islanding detection methods for DG system with different interface controls

机译:不同界面控制的DG系统有源频率漂移孤岛检测方法的设计与比较

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The active islanding detection methods (IDMs) can effectively mitigate the islanding non-detection zones (NDZs) compared with passive IDMs in the inverter based DG systems but the improvement depends highly on the interface control schemes. In this paper, different reactive power variation based IDMs, including Active Frequency Drift method (AFD), Slip Mode Frequency Shift Method (SMS) and Sandia Frequency Shift Method (SFS), are implemented on the DG system with different interface controls. The performance of each IDM is further compared and the influence of the interface control schemes is also analyzed. Combined with current control, AFD can reduce the NDZs if the load is capacitive. SMS and SFS provide small NDZs because of the positive feedback especially for the load with small quality factor. In the power controlled DG system, the active frequency drifting is restrained by the outer power loop which functions as a high-pass filter, thus extending the NDZs. In the DG system equipped with the voltage control scheme, the outer voltage loop provides positive effects on the active frequency drifting IDMs so that the overall NDZs reduce. All the analysis is verified with MATLAB/ SIMULINK simulations.
机译:与基于逆变器的DG系统中的被动IDM相比,主动孤岛检测方法(IDM)可以有效地减轻孤岛非检测区域(NDZ),但这种改进很大程度上取决于接口控制方案。本文在具有不同接口控制的DG系统上实现了不同的基于无功功率变化的IDM,包括有源频率漂移法(AFD),滑模频率偏移法(SMS)和桑迪亚频率偏移法(SFS)。进一步比较了每个IDM的性能,并分析了接口控制方案的影响。结合电流控制,如果负载是电容性的,则AFD可以减小NDZ。 SMS和SFS可以提供​​较小的NDZ,因为它们具有正反馈,尤其是对于质量因子较小的负载。在功率控制的DG系统中,有效频率漂移受到外部功率环路的限制,该功率环路起着高通滤波器的作用,从而扩展了NDZ。在配备电压控制方案的DG系统中,外部电压环路对有源频率漂移IDM产生了积极影响,因此总的NDZ减小了。所有分析都通过MATLAB / SIMULINK仿真进行了验证。

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