Research on Energy Performance Contracting mode of demand-side reactive power compensation

Authors

  • Shen Xiao
  • Zhicheng Sun
  • Yao Rao
  • Jianyong Cui
  • Ran Zhang
  • Wei Guo
  • Zheng Liu

DOI:

https://doi.org/10.54097/gbaxdb86

Keywords:

Reactive compensation, Energy Performance Contracting, shapley.

Abstract

Demand-side reactive power compensation achieves the purpose of saving energy and protecting the environment by improving the efficiency of electricity consumption and optimizing the way of electricity consumption, reducing electricity consumption and power demand while completing the same power consumption function. However, some users are facing the problems of insufficient funds and immature technical means, and cannot independently carry out demand-side reactive compensation. This paper proposes the demand-side reactive power compensation Energy Performance Contracting model, describes in detail the participants and operation modes in this mode, and uses Shapley value theory to distribute the benefits between the energy-saving service company and the user, and obtains the preliminary revenue distribution scheme. Three factors, namely the proportion of input, risk sharing and negotiating position, were adopted to revise it, and revised again in combination with the degree of implementation contribution to make the distribution of benefits more scientific and reasonable.

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References

Li Xiaopeng, Cheng Xiaolei, Cai Wenbin, Wang Peng, Lv Haixia. Comprehensive evaluation method of power grid energy conservation and emission reduction and operation efficiency under the carbon neutral target [J]. Electrical technology, 2022,(02): 15-17.

Li Chaorui, Zhang Aimin, Deng Yixing, Wen Yuelong. Multi objective layered energy conservation planning method for smart grid under dual carbon constraints[J]. Energy and environmental protection, 2022, 44(03): 188-193.

Li Min, Jiang Xiaotao, Ma Shuguang, Hu Qianqian, Meng Qinglin, Sun Yue. Research on online monitoring system of power grid energy conservation and environmental protection dispatching based on the Internet of Things[J]. Energy and environmental protection, 2021, 43(10): 170-176.

Q. Tao, L. Zhu, X. Zhao, Z. Ni, J. Li and Z. Huang, "A Method for Optimizing Reactive Power Compensation Configuration Scheme Based on New Energy Low Voltage Ride Through Safety Assessment," 2021 IEEE 5th Conference on Energy Internet and Energy System Integration (EI2), 2021, pp. 1364-1367.

W. Li, W. Wei and Z. J. Yong, "Design of Reactive Power Compensation for Low Voltage Distribution Network Based on Intelligent Control Switch," 2021 IEEE 6th International Conference on Cloud Computing and Big Data Analytics (ICCCBDA), 2021, pp. 591-595.

V. Jurák, Z. Bukvišová, M. Ptáček, D. Topolánek and J. Orságová, "Compensation of reactive power in LV network and its impact on reactive power flow through distribution grid," 2020 21st International Scientific Conference on Electric Power Engineering (EPE), 2020, pp. 1-5.

J. Seo and H. Cha, "A New Reactive Power Compensation method for Voltage regulation of Low Voltage Distribution Line," 2021 IEEE Applied Power Electronics Conference and Exposition (APEC), 2021, pp. 2681-2685.

A. Dhaneria, "Grid Connected PV System with Reactive Power Compensation for the Grid," 2020 IEEE Power & Energy Society Innovative Smart Grid Technologies Conference (ISGT), 2020, pp. 1-5.

Liu Chang, Yao Jianggang, Yao Wenfeng, et al. Determination and analysis of time-of-use electricity price based on DSM [J]. Relays, 2005, 33(15): 57-61.

GBT24915-2010. General Principles of Contract Energy Management Technology [S]. 2010.

Pan Youquan, Yang Shengli. Economic Benefit Analysis of Reactive Power Compensation in Distribution Network [J]. Electronic Components and Information Technology, 2020, 4(01): 105-10.

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Published

08-04-2024

How to Cite

Xiao, S., Sun, Z., Rao, Y., Cui, J., Zhang, R., Guo, W., & Liu, Z. (2024). Research on Energy Performance Contracting mode of demand-side reactive power compensation. Highlights in Science, Engineering and Technology, 90, 232-239. https://doi.org/10.54097/gbaxdb86