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Battery energy storage capacity optimisation for grid-connected microgrids with distributed generators

机译:电池储能容量优化网格连接的微电网与分布式发电机

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This paper presents a battery capacity optimisation method with the aim of investment and operational cost reduction for grid-connected microgrids consisting of dispatchable generators, renewable energy resources and battery energy storage. The operating cost of grid-connected commercial Microgrids is mainly associated with the purchased energy from the grid and monthly peak demand. Hence, mitigating the peak value by the means of battery energy storage and dispatchable generators during the peak period can effectively reduce the operating cost. However, due to the high cost and short life span of the battery energy storage systems, the optimum design of energy storages is of the utmost importance to the Microgrids. This paper proposes an efficient iterative method with an inner unit commitment optimisation layer to achieve the optimised battery capacity. In order to implement the inner unit commitment optimisation, the Mixed Integer Quadratic Programming (MIQP) optimisation algorithm is applied and CPLEX solver is chosen to solve the optimisation problem. This approach is applicable and beneficial when dealing with high demands as it economically distributes the load requirement between the battery and dispatchable generators. Finally, the proposed method is applied to determine the battery capacity of the experimental Microgrid at Griffith University. The simulation results for the understudy case verified the efficiency and effectiveness of the proposed approach.
机译:本文介绍了电池容量优化方法,目的是投资和运营成本降低,用于包括可调度发电机,可再生能源资源和电池储能的网格连接的微电网。网格连接的商业微电网的运营成本主要与网格和每月峰值需求的购买能源相关。因此,通过在峰值周期期间通过电池能量存储和调度发电机来减轻峰值可以有效地降低操作成本。然而,由于电池储能系统的高成本和寿命短,所以能量存储器的最佳设计对微电网来说至关重要。本文提出了一种具有内部单元承诺优化层的高效迭代方法,实现了优化的电池容量。为了实现内部单元承诺优化,应用混合整数二次编程(MIQP)优化算法,选择CPLEX求解器以解决优化问题。当处理高要求时,这种方法适用和有益,因为它经济地分布了电池和调度发电机之间的负载要求。最后,应用了所提出的方法来确定格里菲斯大学实验微普林电池的电池容量。考虑案例的仿真结果验证了所提出的方法的效率和有效性。

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