Research on Optimal Allocation Method of Energy Storage Devices for Coordinated Wind and Solar Power Generation

Haiyun Wang, Xijuan Yu, Qian Chen, Fangyu Wang
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Abstract

Reasonable planning of energy storage device capacity is the basis for efficient utilization of new energy in large-scale regional power grid. This paper first analyzes the operation characteristics of wind turbines, photovoltaic generators and storage batteries, and establishes an energy storage device capacity optimization model that takes into account the minimum total cost of investment, construction and operation, the minimum transmission power fluctuation of distribution network installation nodes, the node voltage offset and the minimum network power loss as the coordination of wind and solar energy storage, Then an improved discrete PSO algorithm is proposed to optimize the power generation system and obtain the optimized configuration of solar and solar storage capacity. Finally, the feasibility and practicability of the proposed model and method are verified by the actual power grid simulation.
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风电与太阳能协同发电储能装置优化配置方法研究
储能装置容量的合理规划是大规模区域电网高效利用新能源的基础。本文首先分析了风力发电机组、光伏发电机组和蓄电池的运行特点,建立了以投资、建设和运行总成本最小、配电网安装节点传输功率波动最小、节点电压偏移和网络损耗最小为风能和太阳能储能协调的储能设备容量优化模型;然后提出一种改进的离散粒子群算法对发电系统进行优化,得到太阳能和太阳能储能的最优配置。最后,通过实际电网仿真验证了所提模型和方法的可行性和实用性。
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