Power Generation Technology ›› 2021, Vol. 42 ›› Issue (3): 298-305.DOI: 10.12096/j.2096-4528.pgt.20063
• Energy Internet • Previous Articles Next Articles
Wentao JIN1(), Xiangjun LI1,*(
), Dong HUI1(
), Jingli LI2(
), Wannian QI2(
), Chengyuan Lü2(
)
Received:
2020-07-30
Published:
2021-06-30
Online:
2021-06-29
Contact:
Xiangjun LI
Supported by:
参数 | SOC/% | ||||
15.2 | 15.2~100 (充电) | 100 (静置) | 100~15 (放电) | 15 (静置) | |
最大值 | 3.231 0 | 3.399 0 | 3.345 6 | 3.190 0 | 3.234 1 |
平均值 | 3.224 4 | 3.374 8 | 3.343 0 | 3.182 2 | 3.229 0 |
最小值 | 3.218 0 | 3.384 0 | 3.339 7 | 3.166 0 | 3.221 2 |
参数 | SOC/% | ||||
15.2 | 15.2~100 (充电) | 100 (静置) | 100~15 (放电) | 15 (静置) | |
最大值 | 3.231 0 | 3.399 0 | 3.345 6 | 3.190 0 | 3.234 1 |
平均值 | 3.224 4 | 3.374 8 | 3.343 0 | 3.182 2 | 3.229 0 |
最小值 | 3.218 0 | 3.384 0 | 3.339 7 | 3.166 0 | 3.221 2 |
1 | 王皓, 张舒淳, 李维展, 等. 储能参与电力系统应用研究综述[J]. 电工技术, 2020, (3): 21- 24. |
WANG H , ZHANG S C , LI W Z , et al. Survey of energy used in power system application[J]. Electric Engineering, 2020, (3): 21- 24. | |
2 | 李建林, 牛萌, 周喜超, 等. 能源互联网中微能源系统储能容量规划及投资效益分析[J]. 电工技术学报, 2020, 35 (4): 874- 884. |
LI J L , NIU M , ZHOU X C , et al. Energy storage capacity planning and investment benefit analysis of micro-energy system in energy interconnection[J]. Transactions of China Electrotechnical Society, 2020, 35 (4): 874- 884. | |
3 | 马锐, 李相俊, 李文启, 等. 可再生能源供电区域电网中储能系统协同调度策略[J]. 发电技术, 2021, 42 (1): 31- 39. |
MA R , LI X J , LI W Q , et al. Cooperative scheduling strategy of energy storage systems for regional grid supplied by renewable energy[J]. Power Generation Technology, 2021, 42 (1): 31- 39. | |
4 |
方金涛, 龚庆武. 考虑需求响应并计及液流电池动态特性的主动配电网系统储能优化配置[J]. 智慧电力, 2019, 47 (11): 1- 8.
DOI |
FANG J T , GONG Q W . Optimal allocation of energy storage system in active distribution network considering demand response and dynamic characteristics of VRB[J]. Smart Power, 2019, 47 (11): 1- 8.
DOI |
|
5 | 王辉, 梁登香, 韩晓娟. 储能参与泛在电力物联网辅助服务应用综述[J]. 发电技术, 2021, 42 (2): 171- 179. |
WANG H , LIANG D X , HAN X J . Reviews of energy storage participating in auxiliary services under ubiquitous internet of things[J]. Power Generation Technology, 2021, 42 (2): 171- 179. | |
6 |
王玮, 余向阳, 高春阳, 等. 全钒液流电池储能在配电网中优化配置策略[J]. 电网与清洁能源, 2020, 36 (5): 83- 89.
DOI |
WANG W , YU X Y , GAO C Y , et al. Optimal configuration strategy of vanadium redox flow battery energy storage in distribution networks[J]. Power System and Clean Energy, 2020, 36 (5): 83- 89.
DOI |
|
7 |
OFFER G J , YUFIT V , HOWEY D A , et al. Module design and fault diagnosis in electric vehicle batteries[J]. Journal of Power Sources, 2012, 206, 383- 392.
DOI |
8 | GONG X Z , XIONG R , MI C C . Study of the characteristics of battery packs in electric vehicles with parallel-connected lithium-ion battery cells[J]. IEEE Transactions on Industry Application, 2014, 51 (2): 3218- 3224. |
9 | 叶季蕾, 李斌, 张宇, 等. 基于全球能源互联网典型特征的储能需求及配置分析[J]. 发电技术, 2021, 42 (1): 20- 30. |
YE J L , LI B , ZHANG Y , et al. Energy storage requirements and configuration analysis based on typical characteristics of global energy internet[J]. Power Generation Technology, 2021, 42 (1): 20- 30. | |
10 | 苏伟, 钟国彬, 徐凯琪, 等. 储能技术经济性评估方法综述[J]. 广东电力, 2019, 32 (1): 29- 35. |
SU W , ZHONG G B , XU K Q , et al. Review of evaluation method for economy of energy storage technology[J]. Guangdong Electric Power, 2019, 32 (1): 29- 35. | |
11 | 梅简, 张杰, 刘双宇, 等. 电池储能技术发展现状[J]. 浙江电力, 2020, 39 (3): 75- 81. |
MEI J , ZHANG J , LIU S Y , et al. Development status of battery energy storage technology[J]. Zhejiang Electric Power, 2020, 39 (3): 75- 81. | |
12 | 张志, 邵尹池, 伦涛, 等. 电化学储能系统参与调峰调频政策综述与补偿机制探究[J]. 电力工程技术, 2020, 39 (5): 71- 77. |
ZHANG Z , SHAO Y C , LUN T , et al. Review on the policies and compensation mechanism of BESS participation in the auxiliary service of frequency and peak modulation[J]. Electric Power Engineering Technology, 2020, 39 (5): 71- 77. | |
13 | FAN L Y, WANG K Y. The study of battery energy storage system deterioration and inconsistency[C]//The 5th Annual IEEE International Conference on Cyber Technology in Automation, Control and Intelligent Systems. Shenyang: IEEE, 2015: 207-212. |
14 | 李相俊, 马锐. 考虑电池组健康状态的储能系统能量管理方法[J]. 电网技术, 2020, 44 (11): 4210- 4217. |
LI X J , MA R . Energy management method of energy storage system considering the SOH of battery pack[J]. Power System Technology, 2020, 44 (11): 4210- 4217. | |
15 |
郭光朝, 李相俊, 张亮, 等. 单体电压不一致性对锂电池储能系统容量衰减的影响[J]. 电力建设, 2016, 37 (11): 23- 28.
DOI |
GUO G C , LI X J , ZHANG L , et al. Impact of cell voltage inconsistency on capacity attenuation of lithium battery storage system[J]. Electric Power Construction, 2016, 37 (11): 23- 28.
DOI |
|
16 |
戴海峰, 王楠, 魏学哲, 等. 车用动力锂离子电池单体不一致性问题研究综述[J]. 汽车工程, 2014, 36 (2): 181- 188.
DOI |
DAI H F , WANG N , WEI X Z , et al. A research review on the cell inconsistency of Li-ion traction batteries in electric vehicles[J]. Automotive Engineering, 2014, 36 (2): 181- 188.
DOI |
|
17 | 陶思成, 谢鑫, 廖成龙, 等. 温度差异对电池一致性的影响[J]. 汽车零部件, 2019, (4): 63- 65. |
TAO S C , XIE X , LIAO C L , et al. Effect of temperature different on consistency of lithium-ion batteries[J]. Automobile Parts, 2019, (4): 63- 65. | |
18 |
MAHAMUD R , PARK C . Reciprocating air flow for Li-ion battery thermal management to improve temperature uniformity[J]. Journal of Power Sources, 2011, 196 (13): 5685- 5696.
DOI |
19 |
杨万里, 田凤军, 王永忠, 等. 纯电动汽车动力电池系统一致性诊断与控制方法研究[J]. 电池工业, 2020, 24 (1): 26- 30.
DOI |
YANG W L , TIAN F J , WANG Y Z , et al. Study on consistency diagnosis and control method of power battery system of electric vehicle[J]. Chinese Battery Industry, 2020, 24 (1): 26- 30.
DOI |
|
20 | 熊瑞. 动力电池管理系统核心算法[M]. 北京: 机械工业出版社, 2018: 11 |
XIONG R . The core algorithm of power battery management system[M]. Beijing: Machinery Industry Press, 2018: 11 | |
21 | 邓一尊. 大规模锂离子电池组不一致性辨识与均衡方法研究[D]. 上海: 上海交通大学, 2018. |
DENG Y Z. State-of-charge inconsistency estimation and equalization for large-scale Li-ion battery pack[D]. Shanghai: Shanghai Jiaotong University, 2018. | |
22 |
莫治波, 茅宁, 梅金辉, 等. 电压一致性对锂离子电池串联使用的影响[J]. 电源技术, 2014, 38 (5): 826- 827.
DOI |
MO Z B , MAO N , MEI J H , et al. Influence of voltage balance on lithium battery series application[J]. Chinese Journal of Power Sources, 2014, 38 (5): 826- 827.
DOI |
|
23 | 宋超, 熊刚, 谢勇波, 等. 基于ARIMA模型的动力电池不一致性预警研究[J]. 控制与信息技术, 2019, (5): 82- 87. |
SONG C , XIONG G , XIE Y B , et al. ARIMA based research on cell inconsistency prediction of power battery[J]. Control and Information Technology, 2019, (5): 82- 87. | |
24 | 张剑波, 黄俊, 李哲. 电池分选方法及系统: 201410071784.7[P]. 2014-05-28. |
ZHANG J B, HUANG J, LI Z. Battery sorting method and system: 201410071784.7[P]. 2014-05-28. | |
25 | 吴伟静. 电动汽车锂动力电池分选及成组技术研究[D]. 吉林: 吉林大学, 2015. |
WU W J. Study on sorting and grouping technology for Lithum-ion battery of electric vehicle[D]. Jilin: Jilin University, 2015. | |
26 | 王帅, 尹忠东, 郑重, 等. 电池模组一致性影响因素在放电电压曲线簇上的表征[J]. 电工技术学报, 2020, 35 (8): 1836- 1847. |
WANG S , YIN Z D , ZHENG C , et al. Representation of influence factors for battery module consistency on discharge voltage curves[J]. Transactions of China Electrotechnical Society, 2020, 35 (8): 1836- 1847. | |
27 |
唐贤文, 罗卫, 吕杰, 等. 锂电池成组不一致性研究[J]. 电源技术, 2019, 43 (1): 64- 66.
DOI |
TANG X W , LUO W , LÜ J , et al. Research progress on inconsistency of lithium-ion batteries[J]. Chinese Journal of Power Sources, 2019, 43 (1): 64- 66.
DOI |
[1] | Zhihua CHEN, Mengkai YOU, Wei CAI, Jingwei HU, Xing HU, Aifang ZHANG, Kejie ZHANG, Wei WANG. Comprehensive Evaluation Model of Energy Storage Power Station With Full Life Cycle [J]. Power Generation Technology, 2023, 44(6): 883-888. |
[2] | Shuaishuai YAN, Yang LU, Wenhui HOU, Kai LIU. Smart Separator Materials of Intrinsic Safe Lithium Battery for Large-scale Electric Energy Storge [J]. Power Generation Technology, 2022, 43(5): 792-800. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||