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Locating the source of voltage sags: Full review, introduction of generalized methods and numerical simulations

机译:查找电压骤降的来源:全面回顾,介绍通用方法和数值模拟

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Locating the source of voltage sags in order to identify the events causing the problem and improving mitigation strategies is a major issue. When two utilities manage interconnected networks or manage a micro grid and an upstream grid, an occurred fault in one area may cause voltage sags that affect sensitive customers/critical loads in another area. From this viewpoint, this paper first reviews and analyses with detail different methods for voltage sag source location. Then eleven generalized method are introduced. A comparative analysis is performed between some of the discussed methods by applying extensive numerical simulations in a Brazilian regional utility by using PSCAD/EMTDC and MATLAB. The location of each monitor represents a difference kind of system topology (radial, interconnected, one source, two sources and interconnected microgrids). In the following, the effectiveness of methods was obtained and comprised for each monitor location and for the whole system.. The results obtained show that the effectiveness of methods based on instantaneous positive sequence components and Clarke's components is equal in many methods except distance relay and resistance sign methods, and that the effectiveness is lower, higher or equal than methods based on positive sequence phasors. The phasor based methods had less effectiveness. The generalized methods based on reactive power using instantaneous positive sequence components and Clarke's components gave the right location in 88% of total simulated cases. The results also provided a comprehensive background to propose future works and to select the best method especially at interconnection point of a micro grid with the presence of renewable distributed energy sources.
机译:找到电压骤降的源头以识别引起问题的事件并改善缓解策略是一个主要问题。当两个公用事业公司管理互连的网络或管理微电网和上游电网时,一个区域中发生的故障可能会导致电压骤降,从而影响另一区域中的敏感客户/关键负载。从这个角度出发,本文首先详细回顾和分析了电压暂降源定位的不同方法。然后介绍了十一种广义方法。通过使用PSCAD / EMTDC和MATLAB在巴西的区域公用事业中进行广泛的数值模拟,可以对某些讨论的方法进行比较分析。每个监视器的位置代表不同类型的系统拓扑(径向,互连,一个源,两个源和互连的微电网)。在下文中,获得了方法的有效性,并包括了每个监控器位置以及整个系统的有效性。获得的结果表明,基于瞬时正序分量和克拉克分量的方法在许多方法中的有效性是相同的,除了距离继电器和电阻符号方法,其有效性低于,高于或等于基于正序相量的方法。基于相量的方法效果较差。使用瞬时正序分量和Clarke分量基于无功功率的通用方法在总模拟案例的88%中给出了正确的位置。研究结果还提供了全面的背景,以提出未来的工作并选择最佳方法,尤其是在存在可再生分布式能源的微电网互连点。

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