An Optimal Multi-Energy Trading Game Strategy for Commercial Park Operators Considering Thermostatically Controlled Loads
ID:207 View Protection:ATTENDEE Updated Time:2021-12-03 10:47:51 Hits:1032 Oral Presentation

Start Time:2021-12-17 09:15(Asia/Shanghai)

Duration:15min

Session:H Other topics in Electrical Engineering » H3Session 30

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Abstract
With the development of economy and society, people's demand for energy continues to grow. In this situation, the good construction of commercial parks can bring economic benefits. In this paper, an optimal multi-energy trading game strategy for commercial park operators considering thermostatically controlled loads is introduced. Firstly, an integrated demand response (DR) model considering the substitution effect of electricity on the user side is constructed. Then, in this model, commercial park operator (CPO) can guide users' energy use behavior of electricity, natural gas and heating at the same time by changing the price of electricity, while commercial users (CUs) provide the control strategy of thermostatically loads, which is the proposed Stackelberg game. Finally, the game case between the CPO and 40 CUs is taken as an example to verify the effectiveness of the proposed model in improving the benefits of all parties.
Keywords
Speaker
Haoming Liu
Hohai University

Haoming Liu
Hohai University

Submission Author
Yanxia Qi Ltd;Henan Jiuyu Bohui Fangzhou Consulting Development Co.
Tingting Gu Hohai University
Qi Zhao Hohai University
Hongkun Bai State Grid Henan Economic Research Institute
Haoming Liu Hohai University
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Important Date
  • Conference Date

    Jul 11

    2023

    to

    Aug 18

    2023

  • Nov 10 2021

    Draft paper submission deadline

  • Dec 10 2021

    Registration deadline

  • Dec 11 2021

    Contribution Submission Deadline

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IEEE IAS
Organized By
IEEE IAS Student Chapter of Southwest Jiaotong University (SWJTU)
IEEE IAS Student Chapter of Huazhong University of Science and Technology (HUST)
IEEE PELS (Power Electronics Society) Student Chapter of HUST