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A Novel Constraints Reduction-Based Optimal Relay Coordination Method Considering Variable Operational Status of Distribution System With DGs

机译:考虑变配电网运行状态的基于约束减少的新型最优中继协调方法

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One of the factors that affect the level of fault currents is the number of short-circuit MVA sources present during the fault. A distribution system with distributed generators (DGs) is a multi-source system, in which DGs can be connected or disconnected to meet the high or low load requirements respectively. Also, during fault conditions, DGs can get disconnected due to their low fault ride-through capabilities. These changes in connections change the number of DGs and the operational status of the system, which in turn change the fault currents seen by relays and the ranges of maximum and minimum fault currents for which the relays settings work coordinately. This paper realizes that an increase in the proliferation of DGs makes the relay coordination problem a highly constrained optimization problem, and changes in the number of DGs make the problem more complex, which can decelerate the overall performance of relays. The aim of this paper is to reduce the complexity and design a fast, robust, and adaptive protection scheme which can efficiently work in the variable environment of the DG-distribution system. This paper proposes a novel constraints reduction-based relay coordination method which selects a small set of constraints out of large set of constraints while determining the optimal relays settings. The relay coordination problem is formulated as a linear programming problem. The performance of the proposed method is tested on the both configurations, radial and meshed, of the IEEE 38-bus distribution system. Comparative studies have been conducted to highlight the advantages of the proposed approach under changing system’s configuration with variable locations and sizes of DGs.
机译:影响故障电流水平的因素之一是在故障期间出现的短路MVA源的数量。具有分布式发电机(DG)的配电系统是一种多源系统,可以将DG连接或断开以满足各自的高负荷或低负荷要求。同样,在故障情况下,DG由于故障穿越能力低而可能会断开连接。连接中的这些变化会改变DG的数量和系统的运行状态,进而改变继电器所看到的故障电流以及继电器设置可协同工作的最大和最小故障电流范围。本文认识到,DG扩散的增加​​使继电器协调问题成为高度约束的优化问题,而DG数量的变化使问题变得更加复杂,这可能会降低继电器的整体性能。本文的目的是降低复杂性,设计一种快速,鲁棒和自适应的保护方案,该方案可以有效地在DG配电系统的可变环境中工作。本文提出了一种新颖的基于约束减少的中继协调方法,该方法在确定最佳中继设置的同时从大量约束中选择一小组约束。继电器协调问题被表述为线性规划问题。该方法在IEEE 38总线配电系统的径向和网格两种配置下的性能都得到了测试。已经进行了比较研究,以突出所提出的方法在更改系统配置且DG的位置和大小可变的情况下的优势。

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