1673-159X

CN 51-1686/N

基于广度优先搜索的配电网故障快速恢复技术

Fast Recovery Technology for Distribution Network Faults Based on Breadth First Search

  • 摘要: 多点故障导致配电网拓扑结构复杂变化,极大增加了故障恢复难度,供电恢复效果不佳。为解决该问题,提出一种基于广度优先搜索的配电网故障快速恢复技术。首先,分析故障后配电网拓扑,采用矩阵法实现故障精确定位,并据此划分故障待恢复区域,确保恢复路径搜索的拓扑一致性;其次,以故障点为起点,运用广度优先搜索算法分层遍历配电网拓扑,快速探索所有可行的供电恢复路径;最后,通过综合评估开关动作次数、网络损耗及失电负荷恢复率等多目标指标,遴选出最优恢复路径并执行开关操作,恢复非故障区域供电。实验结果表明:与基于深度学习、量子萤火虫算法及哈里斯鹰算法3种传统方法相比,应用该技术,开关动作次数最少(仅4次)、网络损耗最低(降至50 kW以下)、失电负荷恢复率最高(达75%以上)。采用该技术能以较少的开关操作高效搜寻最优恢复路径,有效降低网损并提升供电可靠性。该技术所采用的拓扑感知路径搜索机制,可有效避免因拓扑信息缺失或误判导致的负荷遗漏问题。

     

    Abstract: Multi point faults lead to complex changes in distribution network topology, which greatly increases the difficulty of fault recovery, resulting in poor power supply recovery effect. To solve this problem, a fast fault recovery technology for distribution network based on breadth first search is proposed. Firstly, the topology of distribution network after fault is analyzed, and the matrix method is used to accurately locate the fault, and then the fault area to be recovered is divided to ensure the topology consistency of recovery path search; Secondly, taking the fault point as the starting point, the breadth first search algorithm is used to traverse the distribution network topology layer by layer to quickly explore all feasible power supply recovery paths; Finally, through the comprehensive evaluation of multi-objective indicators such as switch action times, network loss and power loss load recovery rate, the optimal recovery path is selected and the switch operation is performed to restore the power supply in the non fault area. The experimental results show that: compared with the three traditional methods based on deep learning, quantum firefly algorithm and Harris hawk algorithm, after the application of this technology, the number of switch actions is the least (only 4), the network loss is the lowest (below 50 kW), and the recovery rate of power loss load is the highest (up to 75%). The conclusion shows that this technology can efficiently search the optimal recovery path with the least switching operation, effectively reduce the network loss and improve the power supply reliability; The topology aware path search mechanism adopted by it effectively avoids the problem of load omission caused by the lack of topology information or misjudgment, which is the key to significantly improve the recovery rate of power loss load.

     

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