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Universal islanding detection technique based on rate of change of sequence components of currents for distributed generations

机译:基于电流序列分量变化率的分布式发电通用孤岛检测技术

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摘要

This study presents a universal islanding detection technique for distribution network containing synchronous, induction and inverter-based distributed generations (DGs). The proposed scheme is based on rate of change of sequence components of current signals acquired at the point of common coupling of the targeted DG. Various non-islanding events along with islanding conditions have been simulated by modelling IEEE 34 bus system using PSCAD/EMTDC software package. Utilising three-phase current samples for full cycle duration of each simulation case of islandingon-islanding conditions, robust performance of the proposed scheme is achieved. The simulation results indicate that the proposed scheme is capable to detect islanding condition rapidly even with zero active and reactive power mismatches for both synchronous and inverter-based DGs. Further, it eliminates non-detection zone completely, works perfectly for multiple DG systems and avoids nuisance tripping during various non-islanding events. Moreover, the performance of the proposed scheme is not affected by change in capacity of DG, location of DG and length of distribution line. Comparative evaluation of the proposed scheme with the existing scheme clearly indicates the superiority of the proposed scheme.
机译:这项研究提出了一种用于配电网的通用孤岛检测技术,该技术包含基于同步,感应和逆变器的分布式发电(DG)。所提出的方案基于在目标DG的公共耦合点处获取的电流信号的序列分量的变化率。通过使用PSCAD / EMTDC软件包对IEEE 34总线系统进行建模,已经模拟了各种非孤岛事件以及孤岛情况。利用三相电流样本在孤岛/非孤岛条件的每个模拟情况下全周期持续时间,可以实现所提方案的鲁棒性能。仿真结果表明,对于同步和基于逆变器的DG,即使有零和无功功率不匹配,该方案也能够快速检测孤岛状态。此外,它完全消除了非检测区域,可完美地适用于多个DG系统,并避免了在各种非孤岛事件期间造成的麻烦跳闸。此外,建议方案的性能不受总装机容量,总装机位置和配电线路长度变化的影响。对该方案与现有方案的比较评估清楚地表明了该方案的优越性。

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