Energy Storage Science and Technology ›› 2023, Vol. 12 ›› Issue (1): 299-311.doi: 10.19799/j.cnki.2095-4239.2022.0455
• Technical Economic Analysis of Energy Storage • Previous Articles Next Articles
Shuili YANG1(), Weifang LIN1, Yanyan CUI1, Erjun WANG2
Received:
2022-08-16
Revised:
2022-09-20
Online:
2023-01-05
Published:
2023-02-08
Contact:
Shuili YANG
E-mail:40303126@qq.com
CLC Number:
Shuili YANG, Weifang LIN, Yanyan CUI, Erjun WANG. Analysis and enlightenment of AGC modulation for combined fire and storage system based on power and capacity compensation[J]. Energy Storage Science and Technology, 2023, 12(1): 299-311.
Table 2
The situation of energy storage improving the frequency regulation ability and income of thermal power units"
项目 | 660 MW直吹式机组 | 300 MW硫化床机组 | |||||
---|---|---|---|---|---|---|---|
火电机 | 火储 | 提升 | 火电机 | 火储 | 提升 | ||
月度响应时间平均 | 合格率 | 83.72% | 100% | 98.23% | 100% | ||
考核分 | 235.6 | 0 | 235.6 | 0 | 0 | 0 | |
月度调节速率平均 | 平均值 | 14.73 | >9.9 | 2.51 | >4.5 | ||
考核分 | 0 | 0 | 0 | 60 | 0 | 60 | |
月度贡献电量平均 | 合格率 | 25.63% | 45.65% | 20% | 29.11% | 37.7% | 8.663% |
补偿分 | 77.75 | 16 | |||||
调节容量 | 1日调节量 | 278.78 | 318.38 | 157.83 | 175.83 | ||
1日补偿分 | 5.57 | 6.36 | 0.792 | 3.15 | 3.51 | 0.36 | |
2日调节量 | 319.18 | 358.78 | 167.88 | 185.88 | |||
2日补偿分 | 6.38 | 7.17 | 0.792 | 3.35 | 3.71 | 0.36 | |
3日调节量 | 57.27 | 96.87 | 73.36 | 91.66 | |||
3日补偿分 | 1.14 | 1.93 | 0.792 | 1.46 | 1.82 | 0.36 | |
月总调节量 | 6552 | 7740 | 3990 | 4533 | |||
月度补偿分 | 131 | 154 | 23.76 | 79.814 | 90.674 | 10.86 | |
月收益分/分 | 337.11 | 86.86 | |||||
月收益/万元 | 33.7 | 8.686 | |||||
年收益/万元 | 404.5 | 104 | |||||
储能投资/万元 | 19.8 MW/9.9 MWh | 2850 | 9 MW/4.5 MWh | 1350 | |||
投资回收期/a | 7 | 12.98 |
1 | 杨军峰, 郑晓雨, 惠东, 等. 储能提升特高压交直流输电能力与提供跨区备用研究[J]. 储能科学与技术, 2019, 8(2): 399-407. |
YANG J F, ZHENG X Y, HUI D, et al. Energy storage for enhancing transmission capacities and trans-regional reserves of a UHV AC/DC power grid[J]. Energy Storage Science and Technology, 2019, 8(2): 399-407. | |
2 | 曾鸣, 王永利, 张硕, 等. “十四五”能源规划与“30·60”双碳目标实现过程中的12个关键问题[J]. 中国电力企业管理, 2021(1): 41-43. |
3 | DONG Z T. 全国整县光伏推进名单公布——676县进行报送并全部列入试点名单[N]. 中国能源报, 2021-09-20(9). |
4 | 陈启鑫, 房曦晨, 郭鸿业, 等. 储能参与电力市场机制:现状与展望[J]. 电力系统自动化, 2021, 45(16): 14-28. |
CHEN Q X, FANG X C, GUO H Y, et al. Participation mechanism of energy storage in electricity market: Status quo and prospect[J]. Automation of Electric Power Systems, 2021, 45(16): 14-28. | |
5 | Federal Energy Regulatory Commission. Frequency regulation compensation in the organized wholesale power markets[EB/OL]. [2011-03-01]. http://www.ferc.gov. |
6 | 陈亦平, 卓映君, 刘映尚, 等. 高比例可再生能源电力系统的快速频率响应市场发展与建议[J]. 电力系统自动化, 2021, 45(10): 174-183. |
CHEN Y P, ZHUO Y J, LIU Y S, et al. Development and recommendation of fast frequency response market for power system with high proportion of renewable energy[J]. Automation of Electric Power Systems, 2021, 45(10): 174-183. | |
7 | 杨超, 孙谊媊, 王勇, 等. 国外典型调频辅助服务市场综述与启示[J]. 电力需求侧管理, 2021, 23(5): 96-100. |
YANG C, SUN Y Q, WANG Y, et al. Review and enlightenment of foreign typical frequency regulation auxiliary service market[J]. Power Demand Side Management, 2021, 23(5): 96-100. | |
8 | 孙丙香, 李旸熙, 龚敏明, 等. 参与AGC辅助服务的锂离子电池储能系统经济性研究[J]. 电工技术学报, 2020, 35(19): 4048-4061. |
SUN B X, LI Y X, GONG M M, et al. Study on the economy of energy storage system with lithium-ion battery participating in AGC auxiliary service[J]. Transactions of China Electrotechnical Society, 2020, 35(19): 4048-4061. | |
9 | 裴玉祥, 贡毅超, 马飞. 火电厂AGC储能调频系统的经济收益研究[J]. 能源与节能, 2019(1): 70-71, 95. |
PEI Y X, GONG Y C, MA F. Research on economic benefits of AGC energy storage FM system in thermal power plant[J]. Energy and Energy Conservation, 2019(1): 70-71, 95. | |
10 | 华北能源监管局.华北区域发电厂并网运行管理实施细则(试行)[EB/OL]. 2008-12-26[2017-02-19]. http://www.doc88.com/p-22520-61700031.html. |
11 | 谢惠藩, 王超, 刘湃泓, 等. 南方电网储能联合火电调频技术应用[J]. 电力系统自动化, 2021, 45(4): 172-179. |
XIE H F, WANG C, LIU P H, et al. Application of joint frequency regulation technology of energy storage and thermal power in China southern power grid[J]. Automation of Electric Power Systems, 2021, 45(4): 172-179. | |
12 | 张立, 牟法海, 周中锋, 等. 电池储能参与发电厂AGC调频技术与经济分析[J]. 电工技术, 2018(8): 76-78. |
ZHANG L, MOU F H, ZHOU Z F, et al. Technology and economic analysis of AGC FM in power plant by battery energy storage[J]. Electric Engineering, 2018(8): 76-78. | |
13 | 闫斯哲, 王维庆, 李笑竹, 等. 储能-机组联合调频的动态经济环境跨区灵活性鲁棒优化调度[J]. 电力系统自动化, 2022, 46(9): 61-70. |
YAN S Z, WANG W Q, LI X Z, et al. Cross-regional flexible robust optimal scheduling in dynamic economic environment with joint frequency regulation of energy storage and units[J]. Automation of Electric Power Systems, 2022, 46(9): 61-70. | |
14 | 时雨, 张忠, 杨晶莹, 等. 储能电池系统提供AGC调频的机会成本建模与市场策略[J]. 储能科学与技术, 2022, 11(7): 2366-2373. |
SHI Y, ZHANG Z, YANG J Y, et al. Opportunity cost modelling and market strategy of energy storage participating in the AGC market[J]. Energy Storage Science and Technology, 2022, 11(7): 2366-2373. | |
15 | 国家能源局. 国家能源局综合司关于2017年四季度电力辅助服务有关情况的通报[EB/OL]. [2018-5-10]. http://www.waizi.org.cn/law/34667.html. |
National Energy Administration. Circular of the General Department of National Energy Administration on the situation of electric auxiliary services in the year of 2017[EB/OL]. [2018-5-10]. http://www.waizi.org.cn/law/34667.html. | |
16 | 国家能源局. 国家能源局综合司关于2018年度电力辅助服务有关情况的通报[EB/OL]. [2019-5-06]. http://www.nea.gov.cn/2019-05/06/c_138037432.htm. |
National Energy Administration. Circular of the General Department of National Energy Administration on the situation of electric auxiliary services in the year of 2018[EB/OL]. [2019-5-06]. http://www.nea.gov.cn/2019-05/06/c_138037432.htm. | |
17 | 国家能源局. 国家能源局综合司关于2019年上半年电力辅助服务有关情况的通报[EB/OL]. [2019-11-05]. http://www.nea.gov.cn/2019-11/05/c_138530102.htm. |
National Energy Administration. Circular of the General Department of National Energy Administration on the situation of electric auxiliary services in the first half year of 2019[EB/OL]. [2019-11-05]. http://www.nea.gov.cn/2019-11/05/c_138530102.htm. | |
18 | 中关村储能产业技术联盟. 储能产业研究白皮书2016[EB/OL]. [2017-02-09]. http://www.docin.com/p-1704686024.html. |
Zhongguancun Energy Storage Industry Technology Alliance. Energy storage industry research white paper in 2016[EB/OL]. [2017-02-09]. http://www.docin.com/p-1704686024.html. | |
19 | 孙冰莹, 杨水丽, 刘宗歧, 等. 辅助单台火电机组AGC的电池储能系统双层优化配置方法[J]. 电力系统自动化, 2019, 43(8): 69-76, 157. |
SUN B Y, YANG S L, LIU Z Q, et al. Optimal Bi-level configuration method for battery energy storage system assisting AGC of single thermal power unit[J]. Automation of Electric Power Systems, 2019, 43(8): 69-76, 157. | |
20 | 孙冰莹, 刘宗歧, 杨水丽, 等. 补偿度实时优化的储能-火电联合AGC策略[J]. 电网技术, 2018, 42(2): 426-436. |
SUN B Y, LIU Z Q, YANG S L, et al. A real-time optimization method of compensation degree for storage coordinated with thermal power unit in AGC[J]. Power System Technology, 2018, 42(2): 426-436. | |
21 | DOE global energy storage database projects[EB/OL]. [2017-05- 16]. http://www.energystora geexchange.org/projects. |
22 | 国家市场监督管理总局, 国家标准化管理委员会. 并网电源一次调频技术规定及试验导则: GB/T 40595—2021[S]. 北京: 中国标准出版社, 2021. |
State Administration for Market Regulation, Standardization Administration of the People's Republic of China. Guide for technology and test on primary frequency control of grid-connected power resource: GB/T 40595—2021[S]. Beijing: Standards Press of China, 2021. | |
23 | 董超, 郝文焕, 董锴, 等. 南方(以广东起步)调频辅助服务市场机制设计与运营实践[J]. 广东电力, 2020, 33(6): 12-19. |
DONG C, HAO W H, DONG K, et al. Mechanism design and operation practice of frequency regulation auxiliary service market in Southern China(starting from Guangdong)[J]. Guangdong Electric Power, 2020, 33(6): 12-19. | |
24 | 国家能源局. 关于促进电储能参与“三北”地区电力辅助服务补偿(市场)机制试点工作的通知[EB/OL]. [2021-05-25]. http: //www.gov. cn/xinwen/2016-06/18/content_5083393.htm. |
National Energy Administration. Notice on promoting the participation of electric energy storages in the electric ancillary services market in "Three North" areas[EB/OL]. [2021-05-25]. http://www.gov.cn/xinwen/2016-06/18/content_5083393.htm. | |
25 | 饶宇飞, 高泽, 杨水丽, 等. 大规模电池储能调频应用运行效益评估[J]. 储能科学与技术, 2020, 9(6): 1828-1836. |
RAO Y F, GAO Z, YANG S L, et al. Operational benefit evaluation for frequency regulation application of large-scale battery energy storage[J]. Energy Storage Science and Technology, 2020, 9(6): 1828-1836. | |
26 | 祝庆伟, 俞小莉, 吴启超, 等. 高能量密度锂离子电池老化半经验模型[J]. 储能科学与技术, 2022, 11(7): 2324-2331. |
ZHU Q W, YU X L, WU Q C, et al. Semi-empirical degradation model of lithium-ion battery with high energy density[J]. Energy Storage Science and Technology, 2022, 11(7): 2324-2331. |
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