| 注册
首页|期刊导航|现代电力|面向5G融合配电网的基站能量共享方法

面向5G融合配电网的基站能量共享方法

尹喜阳 吕国远 王忠钰 卢志鑫 刘乙召 李从非 周振宇 麻秀范

现代电力2024,Vol.41Issue(2):310-317,8.
现代电力2024,Vol.41Issue(2):310-317,8.DOI:10.19725/j.cnki.1007-2322.2022.0242

面向5G融合配电网的基站能量共享方法

Base Station Energy Sharing Method for 5G-integrated Distribution Network

尹喜阳 1吕国远 1王忠钰 1卢志鑫 1刘乙召 1李从非 2周振宇 2麻秀范2

作者信息

  • 1. 国网天津市电力公司信息通信公司,天津市河北区 300010
  • 2. 新能源电力系统国家重点实验室(华北电力大学),北京市昌平区 102206
  • 折叠

摘要

Abstract

In allusion to the key scientific issue of economic multi-base station energy sharing mechanism and implementa-tion method for 5G-integrated distribution network,firstly,a base station energy sharing system was built,a base station en-ergy sharing capability model was proposed,an inter-base sta-tion energy sharing connection model and an energy purchase model between base stations and distribution network were es-tablished.Secondly,a low-cost base station energy sharing method based on one-to-many price-rising matching was pro-posed to solve the energy sharing conflict problem.Finally,the performance of the proposed algorithm was verified by simula-tion.The results of simulation show that compared with the one-sided matching based base station energy sharing algorithm and the base station optimal energy purchase algorithm,the pro-posed algorithm can reduce the energy purchase cost by 14.37%and 41.80%,and reduce the discarded amount of photovoltaic energy by 56.80%and 85.58%,respectively.The proposed algorithm can promote the cost reduction of base sta-tion and the local consumption of renewable energy,and con-tribute to the construction of 5G network and new power sys-tem.

关键词

5G融合配电网/多基站能量共享/基站能量共享冲突/新能源就地消纳/一对多升价匹配

Key words

5G-integrated distribution network/multi-base station energy sharing/base station energy sharing conflict/renewable energy local consumption/one-to-many price-rising matching

分类

信息技术与安全科学

引用本文复制引用

尹喜阳,吕国远,王忠钰,卢志鑫,刘乙召,李从非,周振宇,麻秀范..面向5G融合配电网的基站能量共享方法[J].现代电力,2024,41(2):310-317,8.

基金项目

国家电网有限公司总部管理科技项目资助(5700-202112191A-0-0-00)Project Supported by Science & Research Project of SGCC(5700-202112191A-0-0-00) (5700-202112191A-0-0-00)

现代电力

OA北大核心CSTPCD

1007-2322

访问量0
|
下载量0
段落导航相关论文