中国电力 ›› 2026, Vol. 59 ›› Issue (5): 57-66.DOI: 10.11930/j.issn.1004-9649.202510004
• 有源配电网安全高效运行与协同调控关键技术 • 上一篇 下一篇
收稿日期:2025-10-09
修回日期:2026-03-20
发布日期:2026-05-15
出版日期:2026-05-28
作者简介:基金资助:
TANG Jiajie(
), YUAN Song(
), LI Dian, ZHOU Rong, MEI Jiabao
Received:2025-10-09
Revised:2026-03-20
Online:2026-05-15
Published:2026-05-28
Supported by:摘要:
针对因通信中断导致故障恢复延迟的大范围信息盲区负荷恢复难题,提出一种考虑无人机(unmanned aerial vehicle,UAV)恢复临时通信的有源配电网故障恢复策略。首先在有限无人机资源约束下,构建以最大化盲区高优先级负荷覆盖为目标的通信网络快速恢复模型,优化确定无人机最佳部署位置及各盲区所需应急通信设备的配置方案。在此基础上,通过协调区域内的可调度资源,同步实施孤岛划分与网络拓扑重构,实现无人机部署方案与抢修调度的协同优化,从而最大化故障负荷恢复量。最后,通过仿真实验结果验证所提故障恢复策略的有效性和优越性,相比于人工进行通信网络检修的故障恢复策略,所提策略失电负荷完全恢复时间缩短了60%。
唐佳杰, 袁松, 李典, 周荣, 梅家葆. 考虑无人机恢复临时通信的有源配电网故障恢复策略[J]. 中国电力, 2026, 59(5): 57-66.
TANG Jiajie, YUAN Song, LI Dian, ZHOU Rong, MEI Jiabao. Consider the fault recovery strategy of active distribution network for UAV recovery of temporary communication[J]. Electric Power, 2026, 59(5): 57-66.
图 2 考虑无人机恢复临时通信的有源配电网故障恢复流程
Fig.2 Fault recovery process of active distribution networks considering UAV-assisted temporary communication restoration.
| 负荷等级 | 物理节点集合 | 权重系数 |
| 一 | 4、9、14、27 | w=10.0 |
| 二 | 3、5、6、7、8、13、19、20、30、31 | w=5.0 |
| 三 | 剩余节点 | w=0.5 |
表 1 各节点负荷重要等级分类
Table 1 Classification of important levels of load at each node
| 负荷等级 | 物理节点集合 | 权重系数 |
| 一 | 4、9、14、27 | w=10.0 |
| 二 | 3、5、6、7、8、13、19、20、30、31 | w=5.0 |
| 三 | 剩余节点 | w=0.5 |
| 物理节点 | 负荷类型 |
| 6、10、11、17、22、24、27、28 | 可控负荷 |
| 剩余节点 | 不可控负荷 |
表 2 节点负荷类型
Table 2 Node load type
| 物理节点 | 负荷类型 |
| 6、10、11、17、22、24、27、28 | 可控负荷 |
| 剩余节点 | 不可控负荷 |
| 无人机编号 | 起始停靠点→目的停靠点 | 行驶时间/min |
| 1 | 12→5 | 8.7 |
| 2 | 12→21 | 9.3 |
| 3 | 12→24 | 9.6 |
| 1 | 24→17 | 13.7 |
表 3 无人机通信设备部署节点及行驶时间
Table 3 UAV communication equipment deployment nodes and driving time
| 无人机编号 | 起始停靠点→目的停靠点 | 行驶时间/min |
| 1 | 12→5 | 8.7 |
| 2 | 12→21 | 9.3 |
| 3 | 12→24 | 9.6 |
| 1 | 24→17 | 13.7 |
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