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A novel hybrid islanding detection method using dynamic characteristics of synchronous generator and signal processing technique

机译:利用同步发电机动态特性和信号处理技术的新型混合孤岛检测方法

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摘要

Integration of the distributed generators (DGs) to power system is growing thanks to their technical, economic and environment benefits. The high penetration of DGs however raises a number of technical problems. One of these problems is islanding, which occurs when one or more DGs continue to energize a portion of the power system which has been isolated from the main grid. Timely islanding detection and discrimination between islanding and non-islanding disturbance conditions are very important for the safety of the personnel and the safe operation of equipment. This paper proposes a hybrid islanding detection method for distribution systems containing synchronous distributed generation (SDG) based on two active and reactive power control loops and a signal processing technique. The operation of the control loops accelerates islanding detection at early stages of instability by processing the terminal voltage of SDG. The proposed method is validated by extensive simulations. The results demonstrate that the proposed method is able to timely and precisely detect islanding situations and can clearly distinguish between islanding and non-islanding events, even if active and reactive power between generation and demand are very close. In addition, the proposed method has negligible impacts on power quality and is capable to allow the islanded system to operate in autonomous mode after separation from the main grid.
机译:由于分布式发电机(DG)的技术,经济和环境优势,它们与电力系统的集成正在增长。但是,DG的高渗透率带来了许多技术问题。这些问题之一是孤岛,当一个或多个DG继续为已与主电网隔离的一部分电力系统供电时,就会发生孤岛。及时的孤岛检测和区分孤岛和非孤岛扰动状况对于人员安全和设备安全操作非常重要。提出了基于有功和无功两个控制回路和信号处理技术的包含同步分布式发电(SDG)的配电系统混合孤岛检测方法。控制环路的操作通过处理SDG的端电压来加快不稳定性早期的孤岛检测。通过广泛的仿真验证了该方法的有效性。结果表明,即使发电与需求之间的有功功率和无功功率非常接近,该方法也能够及时准确地检测出孤岛情况,并且能够清晰地区分孤岛事件和非孤岛事件。另外,所提出的方法对电能质量的影响可以忽略不计,并且能够使孤岛系统与主电网分离后以自主模式运行。

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