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首页> 外文期刊>International journal of electrical power and energy systems >A multi-disaster-scenario distributionally robust planning model for enhancing the resilience of distribution systems
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A multi-disaster-scenario distributionally robust planning model for enhancing the resilience of distribution systems

机译:一种用于增强分配系统的抵御的多灾害场景分布鲁棒规划模型

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摘要

Resilience oriented network planning provides an effective solution to protect the distribution system from natural disasters by the pre-planned line hardening and backup generator allocation. In this paper, a multidisaster-scenario based distributionally robust planning model (MDS-DRM) is proposed to hedge against two types of natural disaster-related uncertainties: random offensive resources (ORs) of various natural disasters, and random probability distribution of line outages (PDLO) that are incurred by a certain natural disaster. The OR uncertainty is represented by the defined probability-weighted scenarios with stochastic programming, and the PDLO uncertainty is modeled as the moment based ambiguity sets. Moreover, the disaster recovery strategies of network reconfiguration and microgrid formation are integrated into the pre-disaster network planning for resilience enhancement in both planning and operation stages. Then, a novel primal cut based decomposition solution method is proposed to improve the computational efficiency of the proposed model. In particular, the equivalent reformulation of the original MDS-DRM is first derived to eliminate the PDLO-related variables. Then, the reformulation problem is solved by the proposed primal cut based decomposition method and linearization techniques. Finally, Simulation results are demonstrated for IEEE 13-node, 33-node and 135-node distribution systems to validate the effectiveness of the proposed method in enhancing the disaster-induced network resilience.
机译:恢复性导向的网络规划提供了一种有效的解决方案,通过预先计划的线路硬化和备用发电机分配来保护分配系统免受自然灾害的保护。在本文中,提出了一种基于多乘语 - 场景的分布稳健规划模型(MDS-DRM),用于对冲两种类型的自然灾害相关的不确定性:各种自然灾害的随机攻击资源(或者),以及线路中断的随机概率分布(PDLO)由一定的自然灾害产生。或不确定性由具有随机编程的定义的概率加权方案表示,并且PDLO不确定性被建模为基于瞬间的模糊集合。此外,网络重新配置和微电网形成的灾难恢复策略集成到灾区预防网络规划中,以便在规划和操作阶段进行抵御增强。然后,提出了一种新的基于基于基于基于切割的分解解决方案方法,提高了所提出的模型的计算效率。特别地,首先导出原始MDS-DRM的等效重构,以消除与PDLO相关的变量。然后,通过基于原始切割的分解方法和线性化技术来解决重构问题。最后,为IEEE 13节点,33节点和135节点分配系统对仿真结果进行了证明,以验证所提出的方法在提高灾害引起的网络弹性方面的有效性。

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