考虑地震攻击交通网影响的配电网韧性评估及提升策略

TM711; 严重的地震灾害不仅会造成配电网大面积停电,还会损坏交通网,阻碍配电网恢复资源的运输,进而减缓配电网恢复.考虑地震攻击交通网的影响,提出地震灾害下配电网的韧性评估方法及韧性提升策略.首先,基于地震动峰值加速度建立反映地震灾害与交通-配电网故障概率关系的地震攻击模型,量化地震灾害对交通-配电网的影响,并生成交通-配电网故障场景.其次,引入配电网抢修队等待道路修复疏通时间,提出配电网韧性评估指标.再次,构建考虑故障线路抢修、道路修复疏通以及应急资源调度的配电网恢复双层优化模型并求解,上层优化模型以最小失电负荷量为目标,下层优化模型以最短配电网抢修队等待道路修复疏通时间为 目标.最后,采...

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Published in上海交通大学学报 Vol. 57; no. 9; pp. 1165 - 1175
Main Authors 颜文婷, 杨隆, 李长城, 罗伟
Format Journal Article
LanguageChinese
Published 广西大学电气工程学院,南宁530004%国网湖南省电力有限公司超高压变电公司,长沙410007 28.09.2023
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ISSN1006-2467
DOI10.16183/j.cnki.jsjtu.2022.152

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Abstract TM711; 严重的地震灾害不仅会造成配电网大面积停电,还会损坏交通网,阻碍配电网恢复资源的运输,进而减缓配电网恢复.考虑地震攻击交通网的影响,提出地震灾害下配电网的韧性评估方法及韧性提升策略.首先,基于地震动峰值加速度建立反映地震灾害与交通-配电网故障概率关系的地震攻击模型,量化地震灾害对交通-配电网的影响,并生成交通-配电网故障场景.其次,引入配电网抢修队等待道路修复疏通时间,提出配电网韧性评估指标.再次,构建考虑故障线路抢修、道路修复疏通以及应急资源调度的配电网恢复双层优化模型并求解,上层优化模型以最小失电负荷量为目标,下层优化模型以最短配电网抢修队等待道路修复疏通时间为 目标.最后,采用12节点交通网与IEEE33节点配电网耦合算例,验证所提韧性指标的可行性以及恢复方法的有效性.结果表明:考虑地震攻击交通网影响的配电网韧性评估指标更准确,所提的恢复策略能有效提升地震灾害下配电网韧性.
AbstractList TM711; 严重的地震灾害不仅会造成配电网大面积停电,还会损坏交通网,阻碍配电网恢复资源的运输,进而减缓配电网恢复.考虑地震攻击交通网的影响,提出地震灾害下配电网的韧性评估方法及韧性提升策略.首先,基于地震动峰值加速度建立反映地震灾害与交通-配电网故障概率关系的地震攻击模型,量化地震灾害对交通-配电网的影响,并生成交通-配电网故障场景.其次,引入配电网抢修队等待道路修复疏通时间,提出配电网韧性评估指标.再次,构建考虑故障线路抢修、道路修复疏通以及应急资源调度的配电网恢复双层优化模型并求解,上层优化模型以最小失电负荷量为目标,下层优化模型以最短配电网抢修队等待道路修复疏通时间为 目标.最后,采用12节点交通网与IEEE33节点配电网耦合算例,验证所提韧性指标的可行性以及恢复方法的有效性.结果表明:考虑地震攻击交通网影响的配电网韧性评估指标更准确,所提的恢复策略能有效提升地震灾害下配电网韧性.
Author 杨隆
李长城
颜文婷
罗伟
AuthorAffiliation 广西大学电气工程学院,南宁530004%国网湖南省电力有限公司超高压变电公司,长沙410007
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Author_FL YAN Wenting
YANG Long
LI Changcheng
LUO Wei
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Keywords 配电系统韧性
交通-配电网
韧性评估指标
恢复策略
earthquake disaster
distribution system resilience
transportation-distribution networks
地震灾害
re-silience evaluation index
restoration strategy
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Snippet TM711; 严重的地震灾害不仅会造成配电网大面积停电,还会损坏交通网,阻碍配电网恢复资源的运输,进而减缓配电网恢复.考虑地震攻击交通网的影响,提出地震灾害下配电网的韧性...
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StartPage 1165
Title 考虑地震攻击交通网影响的配电网韧性评估及提升策略
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