Scenarios Analysis and Energy Supply Optimization Configuration for Multi-station Integration

Yan Li, Yazhong Ye, Hong Li, Haifeng Liang, Qun Zhang, Qingshan Wang, Qiong Wang
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Abstract

Multi-station integration is conducive to intensive and efficient utilization of resources and provides basic guarantee for the construction of ubiquitous power internet of things. This paper studies the integration mode of "substation + data center station + battery energy storage station", and further explores the energy supply structure of the multi-station integration energy service station under different integrated element scenarios. Secondly, the planning-operation bi-layer model of multi-station integration is established, which aims at minimizing the total economic cost of equivalent annual value, and comprehensively considers the characteristics of multi-energy complementary energy flow of the system as well as the operation constraints under the function positioning of substations. Then the CPLEX solver is called under the YALMIP platform through MATLAB and combined with the improved particle swarm algorithm to complete the interactive solution of the upper and lower model. Finally, an example is used to verify the correctness of the model and analyze the economics of multi-station integration, which provides a reference for the actual construction of multi-station integration.
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多站集成的场景分析与能源供应优化配置
多站集成有利于资源集约高效利用,为建设泛在电力物联网提供基本保障。本文研究了“变电站+数据中心站+电池储能站”的集成模式,并进一步探讨了不同集成元场景下多站一体化能源服务站的供能结构。其次,以等值年值总经济成本最小为目标,综合考虑系统多能互补能流特点和变电站功能定位下的运行约束,建立多站一体化规划-运行双层模型;然后通过MATLAB在YALMIP平台下调用CPLEX求解器,结合改进的粒子群算法完成上下模型的交互求解。最后,通过算例验证了模型的正确性,并对多工位一体化的经济性进行了分析,为实际建设多工位一体化提供参考。
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