Compressed air energy storage in an electricity system with significant wind power generation

被引:148
|
作者
Swider, Derk J. [1 ]
机构
[1] Univ Stuttgart, Inst Energy Econ & Rat Use Energy, D-7000 Stuttgart, Germany
关键词
compressed air energy storage; power system modeling; stochastic systems; wind energy; wind integration costs;
D O I
10.1109/TEC.2006.889547
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
In this paper, a stochastic electricity market model is applied to estimate the effects of significant wind power generation on system operation and on economic value of investments in compressed air energy storage (CAES). The model's principle is cost minimization by determining the system costs mainly as a function of available generation and transmission capacities, primary energy prices, plant characteristics, and electricity demand. To obtain appropriate estimates, notably reduced efficiencies at part load, start-up costs, and reserve power requirements are taken into account. The latter are endogenously modeled by applying a probabilistic method. The intermittency of wind is covered by a stochastic recombining tree and the system is considered to adapt on increasing wind integration over time by endogenous modeling of investments in selected thermal power plants and CAES. Results for a German case study indicate that CAES can be economic in the case of large-scale wind power deployment.
引用
收藏
页码:95 / 102
页数:8
相关论文
共 50 条
  • [21] Optimal Stochastic Operation of a Power System Incorporated with Compressed Air Energy Storage and Wind Turbine
    Akbari-Dibavar, Alireza
    Daneshvar, Mohammadreza
    Mohammadi-Ivatloo, Behnam
    Zare, Kazem
    2020 28TH IRANIAN CONFERENCE ON ELECTRICAL ENGINEERING (ICEE), 2020, : 2013 - 2018
  • [22] Investigation on wind energy-compressed air power system
    Jia Guang-zheng
    Wang Xuan-yin
    Wu Gen-mao
    Journal of Zhejiang University-SCIENCE A, 2004, 5 (3): : 290 - 295
  • [23] Compressed air energy storage units for power generation and DSM in Korea
    Lee, Sang-Seung
    Kim, Young-Min
    Park, Jong-Keun
    Moon, Seung-Il
    Yoon, Yong-Tae
    2007 IEEE POWER ENGINEERING SOCIETY GENERAL MEETING, VOLS 1-10, 2007, : 2406 - +
  • [24] Compressed Air Energy Storage System Modeling for Power System Studies
    Calero, Ivan
    Canizares, Claudio A.
    Bhattacharya, Kankar
    IEEE TRANSACTIONS ON POWER SYSTEMS, 2019, 34 (05) : 3359 - 3371
  • [25] Design of a compressed air energy storage system for hydrostatic wind turbines
    Ali, Ammar E.
    Libardi, Nicholas C.
    Anwar, Sohel
    Izadian, Afshin
    AIMS ENERGY, 2018, 6 (02) : 229 - 244
  • [26] Scroll cutting-in control of mechanical coupling compressed air energy storage wind generation system
    Chu, X.-G., 1600, Editorial Department of Electric Machines and Control (18):
  • [27] Integrating compressed air energy storage with a diesel engine for electricity generation in isolated areas
    Li, Yongliang
    Sciacovelli, Adriano
    Peng, Xiaodong
    Radcliffe, Jonathan
    Ding, Yulong
    APPLIED ENERGY, 2016, 171 : 26 - 36
  • [28] Subcooled compressed air energy storage system for coproduction of heat, cooling and electricity
    Arabkoohsar, A.
    Dremark-Larsen, M.
    Lorentzen, R.
    Andresen, G. B.
    APPLIED ENERGY, 2017, 205 : 602 - 614
  • [29] Experimental study on the feasibility of isobaric compressed air energy storage as wind power side energy storage
    Liu, Changchun
    Su, Xu
    Yin, Zhao
    Sheng, Yong
    Zhou, Xuezhi
    Xu, Yujie
    Wang, Xudong
    Chen, Haisheng
    APPLIED ENERGY, 2024, 364
  • [30] A model of a hybrid power plant with wind turbines and compressed air energy storage
    Arsie, I.
    Marano, V.
    Nappi, G.
    Rizzo, G.
    Proceedings of the ASME Power Conference 2005, Pts A and B, 2005, : 987 - 1000