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机构地区:[1]中南大学信息科学与工程学院,长沙410083
出 处:《仪器仪表学报》2016年第1期200-207,共8页Chinese Journal of Scientific Instrument
基 金:国家自然科学基金(61174125)项目资助
摘 要:目前,传统的静态电价联动模型已经很难描述复杂的含有电动汽车的微电网市场,V2M系统的需求管理和电价优化有待深入的研究。本文根据含有电动汽车的微电网的并网工作模式,运用博弈论描述含有电动汽车的微电网中各个主体的经济行为,提出一种更符合实际的基于博弈均衡的分时电价最优定价策略的微电网运行优化调度方法,建立含有电动汽车的微电网系统电价博弈场景,并且严格证明了场景中系统NE的存在性,求取出博弈场景的NE。通过算例分析,结果证明了博弈模型的有效性,研究结果对V2M系统分时电价定价提供一种新的途径。V2M is research focus with its advantages Marketized microgrid is an important step towards the development. The market price is the key to meet the demand of the microgrid management response. Currently, the traditional static electricity linkage model is difficult to describe the complex V2M market. V2M system electricity price optimization and management need further study. According to V2M on-gird operating mode, the game theory description is used for V2M' s economic activity, and an equilibrium game based on optimal TOU pricing strategy optimization and scheduling for V2M is proposed. A price game scenario is established for V2M. According to the working mode, the existence of the system NE is strictly proved. Finally, NE results are calculated. The analysis of the example proves the validity of the game model. Results provided a novel approach to TOU of V2M.
分 类 号:TH70[机械工程—仪器科学与技术]
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