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首页> 外文期刊>Industry Applications, IEEE Transactions on >Islanding Detection of Distributed Generation Based on Rate of Change of Exciter Voltage With Circuit Breaker Switching Strategy
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Islanding Detection of Distributed Generation Based on Rate of Change of Exciter Voltage With Circuit Breaker Switching Strategy

机译:基于励磁电压变化率的断路器切换策略的分布式发电孤岛检测

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摘要

This paper presents a new islanding detection method for synchronous distributed generation (DG). The proposed method is developed based on the combination of rate of change of exciter voltage (RCEV) and open–close circuit breaker (OCCB) at a DG connection point. Whenever the RCEV parameter is not sufficient enough to detect an islanding condition efficiently and correctly, the OCCB strategy will be triggered. The proposed OCCB strategy sends a switching command to one phase of the three-phase circuit breaker (CB), which connects the DG to the grid. In this way, the CB will be immediately opened and then closed. This switching condition will cause a variation in the value of RCEV. This variation is small for the conditions when DG operates in parallel with the main grid, whereas it will be large during the occurrence of islanding. The implementation of the proposed strategy is cost-effective because it only uses the CB at the DG output and does not require any extra equipment. The proposed approach is tested on two different systems including a hypothetical power system and the IEEE 33-bus test system in MATLAB/Simulink environment. The simulation results show that the proposed method eliminates the nondetection zone and also reveals high accuracy compared with previously introduced methods. Moreover, it has been proved that the performance of the proposed approach is not affected by DG capacity, DG location, the number of DG units, as well as network configuration.
机译:本文提出了一种新的同步分布式发电孤岛检测方法。所建议的方法是基于DG连接点处的励磁电压变化率(RCEV)和开闭断路器(OCCB)的组合而开发的。只要RCEV参数不足以有效且正确地检测出孤岛状态,就会触发OCCB策略。提出的OCCB策略将开关命令发送到三相断路器(CB)的一个相,该断路器将DG连接到电网。这样,断路器将立即打开然后关闭。此切换条件将导致RCEV值变化。在DG与主电网并联运行的情况下,这种变化很小,而在发生孤岛时变化很大。拟议策略的实施具有成本效益,因为它仅在DG的输出端使用断路器,而无需任何额外的设备。在两种不同的系统上对提出的方法进行了测试,包括假设电源系统和MATLAB / Simulink环境中的IEEE 33总线测试系统。仿真结果表明,与先前介绍的方法相比,该方法消除了非检测区域,并具有较高的精度。而且,已经证明,所提出的方法的性能不受DG容量,DG位置,DG单元的数量以及网络配置的影响。

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