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Power-Heat Generation Sources Planning in Microgrids to Enhance Resilience against Islanding due to Natural Disasters

机译:微电网中的电力发热源规划,以增强因自然灾害而抵御岛屿的抵御力

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Natural disasters can cause the long inaccessibility of microgrids to main power/gas networks. In this paper, the combination and size of different power/heat generation sources including fuel-based distributed generation (DG), combined heat and power (CHP), electrical to heat (ETH) unit, thermal energy storage (TES), electrical energy storage (EES), photovoltaic (PV) and wind turbine (WT) units are optimized using a stochastic multi-objective model. The proposed model is formulated to minimize the planning cost of power/heat sources while maximizing the system resilience through minimization of the expected energies not served during islanding conditions due to natural disasters. To solve the model, ε-constraint method is implemented. The impact of DR program and the vulnerability of PV against natural disasters are also investigated on the planning cost of power/heat sources and system resilience.
机译:自然灾害可能导致微电网无法访问微电网到主电源/天然气网络。本文在本文中,不同功率/发热源的组合和尺寸包括基于燃料的分布发电(DG),组合热量和功率(CHP),电气到热(ETH)单元,热能存储(TES),电能储存(EES),光伏(PV)和风力涡轮机(WT)单元使用随机多目标模型进行了优化。制定了所提出的模型,以最大限度地减少电力/热源的规划成本,同时通过最小化由于自然灾害导致的岛屿条件期间不服务的预期能量最大限度地提高系统弹性。为了解决模型,实现了ε-约束方法。博士计划和PV漏洞对抗自然灾害的影响也被调查了电力/热源和系统恢复力的规划成本。

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