Sizing of hydrogen energy storage concepts for simultaneous participation in various energy markets

被引:1
|
作者
Klaas, Ann-Kathrin [1 ]
Beck, Hans-Peter [1 ]
Hauer, Ines [1 ]
机构
[1] Tech Univ Clausthal, Inst Elect Power Engn & Energy Syst, Clausthal Zellerfeld, Germany
来源
2023 19TH INTERNATIONAL CONFERENCE ON THE EUROPEAN ENERGY MARKET, EEM | 2023年
关键词
Compressed Air Energy Storage; Co-Optimization; Hydrogen Compressed Air Energy Storage; Hydrogen Energy Storage; Linear ProgrammingCompressed Air Energy Storage; Linear Programming; OXYGEN; COST;
D O I
10.1109/EEM58374.2023.10161861
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Large-scale energy storage systems are indispensable for the transition towards a net-zero energy system. The profitability of such a storage system is essential to ensure proper operation and avoid complex incentives. A linear programming model with perfect forecast was developed to analyze the simultaneous participation of two hydrogen energy storage concepts in various German energy markets. The results show that both concepts can be operated profitable under current and future market conditions only when participating in various energy markets. The hydrogen compressed air storage (HCAES) shows higher yearly profits than the hydrogen energy storage (HES) because of a higher fuel efficiency. Higher profits lead to higher optimal rated power and storage capacity because the revenue compensates for the investment costs. The storage plants participate on average in two to three energy markets simultaneously. In the future, this value can increase to five energy markets on average.
引用
收藏
页数:8
相关论文
共 50 条
  • [31] Economic assessment of the participation of a stationary storage system in the control energy markets of Austria
    Rezania, Rusbeh
    Prüggler, Wolfgang
    Informatik-Spektrum, 2013, 36 (01) : 69 - 77
  • [32] Participation of Pumped Hydro Storage in Energy and Performance-Based Regulation Markets
    Alharbi, Hisham
    Bhattacharya, Kankar
    IEEE TRANSACTIONS ON POWER SYSTEMS, 2020, 35 (06) : 4307 - 4323
  • [33] Optimal sizing for an integrated energy system considering degradation and seasonal hydrogen storage
    Pu, Yuchen
    Li, Qi
    Zou, Xueli
    Li, Ruirui
    Li, Luoyi
    Chen, Weirong
    Liu, Hong
    APPLIED ENERGY, 2021, 302
  • [34] Component Sizing and Energy Management for a Supercapacitor and Hydrogen Storage Based Hybrid Energy Storage System to Improve Power Dispatch Scheduling of a Wind Energy System
    Hossain, Md. Biplob
    Islam, Md. Rabiul
    Muttaqi, Kashem M.
    Sutanto, Danny
    Agalgaonkar, Ashish P.
    IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS, 2025, 61 (01) : 872 - 883
  • [35] Sizing of Renewable Energy Hydrogen Systems
    Human, G.
    van Schoor, G.
    Uren, K. R.
    IEEE AFRICON 2011, 2011,
  • [36] Energy Storage Power and Energy Sizing and Specification Using HSSPFC
    Bijaieh, Mehrzad M.
    Weaver, Wayne W.
    Robinett, Rush D., III
    ELECTRONICS, 2020, 9 (04)
  • [37] Sizing of an Energy Storage Connected to a Wind Farm in an Energy Market
    Abu-Elrub, Ahmad
    Bashaireh, Ahmad
    Al-Masri, Hussein
    Singh, Chanan
    2015 NORTH AMERICAN POWER SYMPOSIUM (NAPS), 2015,
  • [38] Considerations for Sizing Energy Storage Technologies in Wave Energy Systems
    Wu, Eric
    Knight, Andrew M.
    2017 20TH INTERNATIONAL CONFERENCE ON ELECTRICAL MACHINES AND SYSTEMS (ICEMS), 2017,
  • [39] Optimal sizing of energy storage for efficient integration of renewable energy
    Harsha, Pavithra
    Dahleh, Munther
    2011 50TH IEEE CONFERENCE ON DECISION AND CONTROL AND EUROPEAN CONTROL CONFERENCE (CDC-ECC), 2011, : 5813 - 5819
  • [40] Dynamic simulation of hydrogen-based zero energy buildings with hydrogen energy storage for various climate conditions
    Mansir, Ibrahim B.
    Hani, E. H. Bani
    Ayed, Hamdi
    Diyoke, Chidiebere
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2022, 47 (62) : 26501 - 26514