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Configuration Optimization of Wind-Solar-Storage System considering Demand Response

机译:考虑需求响应的风电储能系统配置优化

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This paper proposes an optimal planning model of a wind-solar-storage system. In the planning model, the objective function is maximized total comprehensive socio-economic benefit and the system reliability. The benefit includes the initial cost, maintenance cost, generation subsidy and DR subsidy. The loss of power supply probability (LPSP) and energy wastage rate (EWR) are taken as the assessment indices to evaluate the system reliability. The economic benefit and reliability of the system are taken as the optimal multi-objective. Battery energy storage system (BESS) and demand response (DR) are configured considering the interaction between BESS and DR. The improved gravity search algorithm is adopted to compute the optimized capacity configuration. The optimal results demonstrate the rationality of the planning model.
机译:本文提出了一种风光储存系统的最优规划模型。在计划模型中,目标功能是最大限度地提高总体综合社会经济效益和系统可靠性。收益包括初始成本,维护成本,发电补贴和灾难恢复补贴。以掉电概率(LPSP)和能量损耗率(EWR)为评估指标,对系统的可靠性进行了评估。系统的经济效益和可靠性被认为是最优的多目标。考虑到BESS和DR之间的交互,配置了电池能量存储系统(BESS)和需求响应(DR)。采用改进的重力搜索算法来计算优化的容量配置。最优结果表明了该规划模型的合理性。

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