Exploiting Internet Data Centers as Energy Prosumers in Integrated Electricity-Heat System

被引:29
|
作者
Yin, Xunhu [1 ]
Ye, Chengjin [1 ]
Ding, Yi [1 ]
Song, Yonghua [2 ]
机构
[1] Zhejiang Univ, Coll Elect Engn, Hangzhou 310027, Peoples R China
[2] Univ Macau, State Key Lab Internet Things Smart City, Macau, Peoples R China
基金
美国国家科学基金会;
关键词
Internet data centers; integrated electricity-heat systems; energy prosumers; hierarchical dispatch scheme; DEMAND RESPONSE; WASTE HEAT; POWER; MANAGEMENT; RECOVERY; NETWORK; OPTIMIZATION; GENERATION; OPERATION; STRATEGY;
D O I
10.1109/TSG.2022.3197613
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
In some emerging Internet data center (IDC) projects, the waste heat dissipated from IT facilities is being captured and supplied to the district heating systems for energy efficiency concerns. From the perspective of electricity consumption and heat production, IDCs can be regarded as energy prosumers, whose spatial and temporal flexibility of energy behaviors is of great significance for the operation of integrated electricity-heat systems (IEHSs). To explore the potential benefits, the required modeling and dispatching techniques are investigated in this paper. Firstly, an Internet-service based energy prosumer model of IDCs is formulated. Especially, the heat production capability is represented considering the complete dynamic heat flow including the heat dissipation, exchange, recovery, and upgrading. And fuzzy parameters are utilized to characterize the uncertainties of the forecasted workloads in advance of the dispatch for IDCs. Moreover, an integrated operation framework for the IDC-IEHS is constructed. Specifically, a hierarchical dispatch scheme is further proposed to achieve privacy-constrained cooperative scheduling between the energy system and IDCs. In the scheme, the energy requirements for IDCs are obtained from the integrated optimal heat and power flow calculation where the temporal scale difference between the electric power and heating systems is considered. The obtained energy requirements are then regarded as the target values for the workload scheduling of IDCs. A deviation correction mechanism is designed to achieve the overall optimality of the IDC-IEHS. Finally, the hydraulic-thermal decomposition and trapezoid fuzzy value equivalence methods are used to solve the optimization problems. Simulation results demonstrate that exploiting IDCs as energy prosumers can promote the accommodation of renewables and reduce system cost in the IEHS, as well as improving the self energy efficiency of IDCs.
引用
收藏
页码:167 / 182
页数:16
相关论文
共 50 条
  • [1] Reliability Evaluation of Electricity-heat Integrated Energy System with Heat Pump
    Zhang, Shenxi
    Wen, Min
    Cheng, Haozhong
    Hu, Xiao
    Xu, Guodong
    [J]. CSEE JOURNAL OF POWER AND ENERGY SYSTEMS, 2018, 4 (04): : 425 - 433
  • [2] Analysis of equivalent energy storage for integrated electricity-heat system
    Yang, Miao
    Ding, Tao
    Chang, Xinyue
    Xue, Yixun
    Ge, Huaichang
    Jia, Wenhao
    Du, Sijun
    Zhang, Hongji
    [J]. ENERGY, 2024, 303
  • [3] Security and Economic Integration Scheduling of Electricity-Heat Integrated Energy System
    Huang, Kun
    Fu, Ming
    Ding, Xiaohua
    [J]. IEEE ACCESS, 2023, 11 : 112236 - 112247
  • [4] Linearization flow calculation for integrated electricity-heat energy system based on data-driven
    Wei, Zhinong
    Zhong, Leilei
    Xue, Mingfeng
    Mao, Xiaobo
    Pan, Yongtao
    [J]. Dianli Zidonghua Shebei/Electric Power Automation Equipment, 2019, 39 (08): : 31 - 37
  • [5] Distributed optimization of integrated electricity-heat energy system considering multiple energy hubs
    Cheng, Enlin
    Wei, Zhinong
    Ji, Wenlu
    Ye, Ting
    Chen, Sheng
    Zhou, Yizhou
    Sun, Guoqiang
    [J]. Dianli Zidonghua Shebei/Electric Power Automation Equipment, 2022, 42 (01): : 37 - 44
  • [6] Robustness evaluation method and defense strategy of electricity-heat integrated energy system
    Hu, Funian
    Peng, Chenhui
    Chen, Jun
    [J]. INTERNATIONAL JOURNAL OF CRITICAL INFRASTRUCTURE PROTECTION, 2024, 46
  • [7] Risk dispatching of electricity-heat integrated energy system considering unimodal distribution
    Liu, Tongchui
    Pan, Wenxia
    Liu, Mingyang
    Zhu, Zhu
    [J]. Dianli Zidonghua Shebei/Electric Power Automation Equipment, 2023, 43 (08): : 17 - 24
  • [8] Energy Management Strategy of Integrated Electricity-Heat Energy System Based on Federated Reinforcement Learning
    Wang, Jinfeng
    Wang, Qi
    Ren, Zhengmou
    Sun, Xiaochen
    Sun, Yi
    Zhao, Yiyi
    [J]. Shanghai Jiaotong Daxue Xuebao/Journal of Shanghai Jiaotong University, 2024, 58 (06): : 904 - 915
  • [9] Optimal Operation Method for Electricity-Heat Integrated Energy System Considering Vulnerability Prevention
    Pan, Yi
    Wang, Mingshen
    Yuan, Xiaodong
    Miao, Huiyu
    Han, Huachun
    Zeng, Fei
    [J]. JOURNAL OF ENERGY ENGINEERING, 2023, 149 (06)
  • [10] Optimal Dispatch Model of Electricity-heat Integrated Energy System Considering Reserved Benefits of Heat Storage
    Li, Jian
    Li, Xuefeng
    Zhang, Na
    Zhang, Yan
    Lü, Quan
    [J]. Dianwang Jishu/Power System Technology, 2021, 45 (10): : 3851 - 3858