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Optimal location, selection, and operation of battery energy storage systems and renewable distributed generation in medium-low voltage distribution networks

机译:电池储能系统的最佳位置,选择和操作和中低压分布网络中可再生分布式发电

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摘要

This paper presents a methodology for the optimal location, selection, and operation of battery energy storage systems (BESSs) and renewable distributed generators (DGs) in medium-low voltage distribution systems. A mixed-integer non-linear programming model is presented to formulate the problem, and a planning-operation decomposition methodology is proposed to solve it. The proposed methodology is separated into two problems (planning and operation problems). The planning problem is related to the location and selection of these devices, and the operation problem is responsible for finding the optimal BESS operating scheme. For solving the planning problem is used a simulated annealing algorithm with a defined neighborhood structure that uses a sensitivity analysis based on the Zbus matrix. A novel decomposition method, which guarantees near-global-optimal solutions with low computational effort, is proposed for solving the operation problem. The effectiveness and accuracy of the proposed decomposition method is validated and tested on an 11-node test system from the specialized literature, and the robustness of the proposed method is assessed and tested on a modified version of an IEEE 135-node test system. The proposed planning-operation decomposition methodology is tested on a real medium-low voltage distribution system of 230 nodes. To verify the efficiency of the proposed methodology, four cases are compared: (I) without BESS and DGs, (II) with DGs, (III) with BESS, and (IV) with BESS and DGs. The numerical results demonstrate the effectiveness and robustness of the proposed methodology.
机译:本文介绍了中低压分布系统中电池储能系统(BESSS)和可再生分布式发电机(DGS)的最佳位置,选择和操作的方法。提出了一种混合整数非线性编程模型以制定问题,提出了规划操作分解方法来解决它。所提出的方法分为两个问题(规划和运行问题)。规划问题与这些设备的位置和选择有关,操作问题负责查找最佳的BESS操作方案。为了解决规划问题,使用具有所确定的邻域结构的模拟退火算法,该结构使用基于ZBUS矩阵的灵敏度分析。提出了一种新的分解方法,其保证具有低计算工作的近全球最佳解决方案,以解决操作问题。从专业文献的11节点测试系统验证和测试所提出的分解方法的有效性和准确性,并在IEEE 135节点测试系统的修改版本上进行评估和测试该方法的稳健性。在230个节点的真实中低电压分布系统上测试了所提出的规划操作分解方法。为了验证所提出的方法的效率,比较了四种情况:(i)没有贝塞和DGS,(ii)与DGS,(III)与BESS和(IV)与BESS和DGS。数值结果证明了所提出的方法的有效性和鲁棒性。

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