A Configuration Planning Method of Mobile Energy Storage in Various Scenarios

Hongzhou Chen, Jizhong Zhu, Xiaofu Xiong, Jian Wang, Wei Wang, Junjie Cheng
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Abstract

Energy storage technology already has the potential advantages of being mobile, modular, and "plug and play". The results of existing energy storage planning of the Distribution Network (DN) are energy storage configurations with fixed access points and capacity. There is still a lot of room for the flexibility and value of energy. With many renewable energies distributed generation (DG) connected to the distribution network, it can be divided into different operating scenarios according to the seasonality of distributed power and loads in the distribution network. This paper proposes a Mobile Energy Storage (MES) configuration planning method of the DN. Through this method, the MES devices are dynamically allocated between different operating scenarios of the DN regarding the varying load demands as well as DG outputs. The access points, capacities and operation modes of MES devices in various scenarios are taken as the decision variables, the maximum comprehensive economic benefit brought by MES is taken as the objective, and thus the mixed-integer second-order cone programming(MISOCP) model for MES configuration is constructed. Case studies are performed in the modified IEEE 33-node distribution systems. The feasibility and effectiveness of the proposed method are verified The proposed method can be treated as a useful expansion to the flexible operation of energy storage device, through which the MES can well service for various operating scenarios of the DN and thus its value can be fully developed.
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多种场景下移动储能的配置规划方法
储能技术已经具有移动、模块化和“即插即用”的潜在优势。现有配电网储能规划的结果是具有固定接入点和容量的储能配置。能源的灵活性和价值仍有很大的空间。随着众多可再生能源分布式发电机组接入配电网,可根据配电网中分布式电力和负荷的季节性,将其划分为不同的运行场景。提出了一种DN的移动储能(MES)配置规划方法。通过该方法,MES设备可以根据不同的负载需求和DG输出在DN的不同运行场景之间动态分配。以MES设备在不同场景下的接入点、容量和运行方式为决策变量,以MES带来的最大综合经济效益为目标,构建了MES配置的混合整数二阶锥规划(MISOCP)模型。在改进的IEEE 33节点配电系统中进行了案例研究。验证了所提方法的可行性和有效性,可将所提方法视为对储能装置灵活运行的有益拓展,使MES能够很好地服务于DN的各种运行场景,从而充分发挥其价值。
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