会议论文详细信息
International Conference on Manufacturing Technology, Materials and Chemical Engineering
PV value-added service pricing model of stand-alone Stackelberg game
材料科学;化学工业
Li, Wenfeng^1 ; Bai, Hongkun^1 ; Hua, Yuanpeng^1 ; Bu, Feifei^1 ; Han, Ding^1 ; Yang, Meng^1 ; Yin, Shuo^1 ; Wang, Yuanyuan^1 ; Jia, Chuyun^2
State Grid Economic and Technol. Res. Institute of Henan Province State Grid Corporation of China, Zhengzhou
450000, China^1
College of Electrical Engineering and Information Technology, Sichuan University, Chengdu
610064, China^2
关键词: Development prospects;    Economic benefits;    Economic evaluations;    Electricity networks;    New energy technologies;    Potential customers;    Stackelberg Games;    Value added service;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/592/1/012161/pdf
DOI  :  10.1088/1757-899X/592/1/012161
学科分类:材料科学(综合)
来源: IOP
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【 摘 要 】

With the development of new energy technology, the new-type energy still occupy increasingly larger proportion of the future energy structure, and the development prospect is bright. Under the policy background of further opening the sales side, the concept of PV value-added service is proposed to enhance customer stickiness and gain potential customer of power grid enterprises. In this paper, the pricing model of double photovoltaic value-added service system including three main game participants about the photovoltaic seller, grid company and photovoltaic value-added service consumers as the research subjects, Stackelberg game method is established, put forward the best benefits the pricing method of photovoltaic value-added services. At the same time, the actual situation of the Henan photovoltaic park is studied and analyzed. This paper establishes the Stackelberg double-deck game pricing model of 'spontaneous self-use and residual electricity network' in the region, and determines the optimal pricing in this mode. Finally, two economic evaluation indexes are used to evaluate and summarize the economic benefits of 'spontaneous self-use and residual electricity network' service mode.

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