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Optimal Operation of Distribution Networks Considering Energy Storage Devices

机译:考虑储能装置的配电网优化运行

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摘要

This paper presents a mixed-integer second-order cone programing (MISOCP) model to solve the optimal operation problem of radial distribution networks (DNs) with energy storage. The control variables are the active and reactive generated power of dispatchable distributed generators (DGs), the number of switchable capacitor bank units in operation, the tap position of the voltage regulators and on-load tap-changers, and the operation state of the energy storage devices. The objective is to minimize the total cost of energy purchased from the distribution substation and the dispatchable DGs. The steady-state operation of the DN is modeled using linear and second-order cone programing. The use of an MISOCP model guarantees convergence to optimality using existing optimization software. A mixed-integer linear programing (MILP) formulation for the original model is also presented in order to show the accuracy of the proposed MISOCP model. An 11-node test system and a 42-node real system were used to demonstrate the effectiveness of the proposed MISOCP and MILP models.
机译:本文提出了一种混合整数二阶锥规划(MISOCP)模型,以解决带有能量存储的径向配电网(DN)的最优运行问题。控制变量是可调度分布式发电机(DG)的有功和无功发电功率,运行中的可切换电容器组单元数,调压器和有载分接开关的分接位置以及能量的运行状态存储设备。目的是最大程度地减少从配电变电站和可调度DG购买能源的总成本。使用线性和二阶锥编程对DN的稳态操作进行建模。 MISOCP模型的使用保证了使用现有优化软件的收敛性。还提出了原始模型的混合整数线性规划(MILP)公式,以表明所提出的MISOCP模型的准确性。一个11节点的测试系统和一个42节点的真实系统用于证明所提出的MISOCP和MILP模型的有效性。

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