Enhancing energy efficiency in distributed systems with hybrid energy storage

被引:4
|
作者
Meng, Linghao [1 ]
Li, Mei [1 ]
Yang, Hongzhi [2 ]
机构
[1] Zhejiang Business Technol Inst, Ningbo 315012, Zhejiang, Peoples R China
[2] Kunming Univ Sci & Technol, Fac Informat Engn & Automat, Kunming 163000, Yunnan, Peoples R China
关键词
Solar energy utilization; Near -zero energy society; Hybrid energy storage; Two -layer cooperative optimization; Exploitation strategy; PERFORMANCE; STRATEGY; ALGORITHM;
D O I
10.1016/j.energy.2024.132197
中图分类号
O414.1 [热力学];
学科分类号
摘要
This paper presents a pioneering approach to enhance energy efficiency within distributed energy systems by integrating hybrid energy storage. Unlike prior research, our study focuses on synergizing two distinct energy storage systems while concurrently optimizing system configuration and operational strategies to enhance performance and reduce costs. The employed distributed energy system incorporates hybrid energy storage, merging thermal energy storage with power storage technologies such as supercapacitors and lithium batteries. We conduct a comprehensive investigation into the impact of this innovative system on distributed energy systems, employing a dual-objective cooperative optimization method that addresses energy efficiency and economic factors alongside environmental considerations. This approach is applied to an almost zero-energy community, demonstrating its efficacy in improving load profiles and optimizing energy management through demand-side management. Additionally, we incorporate stochastic energy management, renewable energy resource planning, and dynamic storage to account for uncertainties in energy sources and demand, utilizing the Two-Point Estimate Method (2P + E PEM). To address the complexity of the problem, we introduce an advanced multi-objective optimization algorithm, the Horse Herd Optimization Algorithm (HOA), inspired by the movement behavior of horses in a herd. This algorithm exhibits superior performance with various operators including elite selection and crossover. In conclusion, our contributions include the introduction of a distributed energy system with hybrid storage, a dual-objective cooperative optimization method, and the application of advanced algorithms. Our results demonstrate significant reductions, with primary energy consumption decreasing by nearly 54.8 % and equivalent pollutant emissions by 63.6 %, highlighting the significance and effectiveness of our proposed approach.
引用
收藏
页数:20
相关论文
共 50 条
  • [1] On the Latency and Energy Efficiency of Distributed Storage Systems
    Kumar, Akshay
    Tandon, Ravi
    Clancy, T. Charles
    IEEE TRANSACTIONS ON CLOUD COMPUTING, 2017, 5 (02) : 221 - 233
  • [2] Hybrid energy storage for dairy farms: Enhancing energy efficiency and operational resilience
    Li, Thomas Tongxin
    Zhao, Alexis Pengfei
    Wang, Yunqi
    Alhazmi, Mohannad
    JOURNAL OF ENERGY STORAGE, 2025, 114
  • [3] Enhancing flexibility for climate change using seasonal energy storage (aquifer thermal energy storage) in distributed energy systems
    Perera, A. T. D.
    Soga, Kenichi
    Xu, Yujie
    Nico, Peter S.
    Hong, Tianzhen
    APPLIED ENERGY, 2023, 340
  • [4] A Comprehensive Review on Enhancing Seasonal Energy Storage Systems through Energy Efficiency Perspectives
    Hiris, Daniel
    Balan, Mugur Ciprian
    Bode, Florin Ioan
    PROCESSES, 2024, 12 (08)
  • [5] Advancements in hybrid energy storage systems for enhancing renewable energy-to-grid integration
    Adeyinka, Adekanmi Miracle
    Esan, Oladapo Christopher
    Ijaola, Ahmed Olanrewaju
    Farayibi, Peter Kayode
    Sustainable Energy Research, 2024, 11 (01)
  • [6] Hybrid Electric Energy Storage Module for Distributed Energy Storage Systems Based on Ecologically Acceptable Supercapacitor
    Shchur, Ihor
    Grygorchak, Ivan
    Stotsko, Zinoviy
    Borysyuk, Anatoliy
    Shvets, Roman
    Sheremeta, Roman
    Koziy, Volodymyr
    2019 IEEE 2ND UKRAINE CONFERENCE ON ELECTRICAL AND COMPUTER ENGINEERING (UKRCON-2019), 2019, : 395 - 400
  • [7] Hybrid energy storage systems for renewable energy
    Bocklisch, Thilo
    9TH INTERNATIONAL RENEWABLE ENERGY STORAGE CONFERENCE, IRES 2015, 2015, 73 : 103 - 111
  • [8] Enhancing Energy Autonomy in an e-Houseboat: Integration of Renewable Energy Sources with Hybrid Energy Storage Systems
    Grela, Jakub
    Skala, Aleksander
    Laton, Dominik
    Banczyk, Katarzyna
    ENERGIES, 2025, 18 (05)
  • [9] Distributed Energy Dispatch of Electrical Energy Storage Systems
    Xie, Wenjing
    Xia, Xiaohua
    2017 11TH ASIAN CONTROL CONFERENCE (ASCC), 2017, : 2194 - 2199
  • [10] Distributed energy management for ship power systems with distributed energy storage
    Edrington, Chris S.
    Ozkan, Gokhan
    Papari, Behnaz
    Gonsoulin, David E.
    Perkins, Dallas
    Vu, Tuyen V.
    Vahedi, Hesan
    JOURNAL OF MARINE ENGINEERING AND TECHNOLOGY, 2020, 19 (sup1): : 31 - 44