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Co-optimization approach to post-storm recovery for interdependent power and transportation systems

机译:相互依存电力运输系统暴风雨恢复的共同优化方法

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The power and transportation systems are urban interdependent critical infrastructures (CIs). During the post-disaster restoration process, transportation mobility and power restoration process are interdependent, and their functionalities significantly affect other well-beings of other urban CIs. Therefore, to enhance the resilience of urban CIs, successful recovery strategies should promote CI function cooperatively and synergistically to distribute goods and services efficiently. This paper develops an integrative framework that addresses the challenges of enhancing the recovery efficiency of urban power and transportation systems in short-term recovery period. Specifically, the post-storm recovery process is considered as a scheduling problem under the constraints representing crew dispatch, equipment and fuel limit. We propose a new framework for co-optimizing the recovery scheduling of power and transportation systems, respecting precedency requirement and network constraints. The advantages and benefits of co-optimized recovery scheduling are validated in a testing system.
机译:电力和运输系统是城市相互依存的关键基础设施(CIS)。在灾后修复过程中,运输流动性和功率恢复过程是相互依存的,其功能显着影响其他城市独联体的其他众多。因此,为了增强城市独联体的恢复力,成功的恢复策略应促进CI功能,并协同促进有效分配商品和服务。本文制定了一项综合框架,解决了在短期恢复期内提高城市电力和运输系统恢复效率的挑战。具体地,暴风雨后恢复过程被认为是表示机组派派,设备和燃料限制的约束下的调度问题。我们提出了一种共同优化电力和运输系统恢复调度的新框架,尊重先前要求和网络约束。协同优化恢复调度的优点和优点在测试系统中验证。

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