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考虑5G通信和共享储能的产消者实时调控优化策略

陈珂 袁金斗 焦梦婷 陈宋宋 郑博文

电力需求侧管理2024,Vol.26Issue(1):54-60,7.
电力需求侧管理2024,Vol.26Issue(1):54-60,7.DOI:10.3969/j.issn.1009-1831.2024.01.009

考虑5G通信和共享储能的产消者实时调控优化策略

Real-time regulation and optimization strategy of prosumers considering 5G communication and shared energy storage

陈珂 1袁金斗 1焦梦婷 2陈宋宋 1郑博文1

作者信息

  • 1. 需求侧多能互补优化与供需互动技术北京市重点实验室(中国电力科学研究院有限公司),北京 100192
  • 2. 华北电力大学 电气与电子工程学院,北京 102206
  • 折叠

摘要

Abstract

As a high proportion of distributed renewable energy is connected to the power grid,prosumers gradually become an important role in demand-side coordination and optimization.Meanwhile,the problem of response delay of massive resources becomes more obvious in demand-side real-time regulation.Therefore,combined with 5G technology enabling,a real-time regulation and optimization strategy is proposed for prosumers considering 5G communication and shared energy storage.Firstly,the real-time regulation architecture of prosum-ers based on 5G cloud-edge collaboration is designed.Secondly,the regulation service delay model based on 5G is constructed from two as-pects of transmission delay and calculation delay.Then,a real-time operation optimization model considering delay compensation and ener-gy-capacity sharing storage service is established,where the upper objective function is to maximize the revenue of the edge layer aggrega-tor,and the lower objective function is to minimize the total operating cost of all prosumers in the end layer;Finally,simulation results show that the proposed strategy can effectively reduce load deviation caused by delay,improve the new energy consumption capacity,and improve the operational revenue of aggregators,reduce energy consumption costs of prosumers,achieving rapid and precise regulation of demand side resources.

关键词

5G通信/云边协同/产消者/共享储能/实时调控

Key words

5G communication/cloud-edge collaboration/prosumers/shared energy storage/real-time regulation

分类

能源科技

引用本文复制引用

陈珂,袁金斗,焦梦婷,陈宋宋,郑博文..考虑5G通信和共享储能的产消者实时调控优化策略[J].电力需求侧管理,2024,26(1):54-60,7.

基金项目

国家电网有限公司科技项目(5700-202255477A-2-0-KJ) (5700-202255477A-2-0-KJ)

电力需求侧管理

OACSTPCD

1009-1831

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