全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

一种新型混合储能拓扑及其功率分流算法

, PP. 128-135

Keywords: 功率分流,混合储能,主动均衡,模块化多电平拓扑

Full-Text   Cite this paper   Add to My Lib

Abstract:

拓扑结构和功率分流算法是混合储能系统研究的两个重要内容.本文提出了一种基于模块化级联多电平拓扑的混合储能变换器,并且采用了一种特殊的载波层叠调试方法实现模块间的电压均衡.针对混合储能中的功率分流控制问题,本文总结了最经常采用的低通滤波器法的缺点,并在仿真和实验中与一种新的功率分流算法进行了对比.本文在MATLAB\SIMULINK平台上进行了仿真研究,得到了仿真结果,并且在小容量实验平台获得了短时间运行和长时间运行的实验结果.

References

[1]  Tian Jun, Zhu Yongqiang. Application of Energy Storage Technologies in Distributed Generation[J]. Electrical Engineering, 2010(08): 28-32+42
[2]  常乐 等. 储能在能源安全中的作用[J]. 中外能源, 2012(02): 第29-35页.
[3]  Chang Le, Zhang Minji, Liang Jia, Sun Yangzhou. The Function of Energy Storage in Energy Safety[J]. Sino-Global Energy, 2012(02): 29-35
[4]  桑丙玉, 陶以彬等. 超级电容-蓄电池混合储能拓扑结构和控制策略研究[J]. 电力系统保护与控制, 2014(01): 1-6.
[5]  Sang Bingyu, Tao Yibin, et al. Research on topology and control strategy of the super-capacitor and battery hybrid energy storage[J]. Power System Protection and Control, 2014(01): 1-6.
[6]  于芃, 赵瑜等. 基于混合储能系统的平抑风电波动功率方法的研究[J]. 电力系统保护与控制, 2011(12): 35-40.
[7]  Yu Peng, Zhao Yu, et al. Research on the method based on hybrid energy storage system for balancing fluctuant wind power[J]. Power System Protection and Control, 2011(12): 35-40.
[8]  卢芸, 赵永来. 基于模糊神经网络风电混合储能系统优化控制[J]. 电力系统保护与控制, 2014(06): 113-118.
[9]  Lu Yun, Zhao Yonglai. Optimal control in a wind power hybrid energy storage system based on fuzzy neural network[J]. Power System Protection and Control, 2014(06): 113-118.
[10]  张纯江, 董杰等. 蓄电池与超级电容混合储能系统的控制策略[J]. 电工技术学报, 2014(04): 335-340.
[11]  Zhang Chunjiang, Dong Jie, et al. A Control Strategy for Battery-Ultracapacitor Hybrid Energy Storage System[J]. Transactions of China Electrotechnical Society, 2014(04): 335-340.
[12]  Jayasinghe, S. D. G, Vilathgamuwa, D. M., and Madawala, U. K.: A new method of interfacing battery/super capacitor energy storage systems for distributed energy sources[C]. IPEC 2010, pp. 1211- 1216.
[13]  Monteiro, V., Pinto, J. G., Exposto, B., Goncalves, H., Ferreira, J. C., Couto, C., and Afonso, J. L.: Assessment of a battery charger for Electric Vehicles with reactive power control[C]. IECON 2012, pp. 5142-5147.
[14]  Qian, H., Zhang, J., Lai, J., and Yu, W.: A high- efficiency grid-tie battery energy storage system[J]. IEEE Transactions on Power Electronics, 2011, 26(3), pp. 886-896.
[15]  Lee, Y., and Cheng, M.: Intelligent control battery equalization for series connected lithium-ion battery strings[J]. IEEE Transactions on Industrial Electronics, 2005, 52(5): 1297-1307.
[16]  Cassani, P. A., and Williamson, S. S.: Feasibility analysis of a novel cell equalizer topology for plug-in hybrid electric vehicle energy-storage systems[J]. IEEE Transactions on Vehicular Technology, 2009, 58, (8), pp. 3938-3946.
[17]  A Hillers, and Biela, J. Optimal design of the modular multilevel converter for an energy storage system based on split batteries[C]. EPE 2013, pp. 1-11.
[18]  Martel, T., and Rufer, A.: Electric vehicle driving and fast charging system based on configurable modular multilevel converter (CMMC)[C]. EPE 2013, pp. 1-10.
[19]  Wei Li, Joos, G.: A power electronic interface for a battery supercapacitor hybrid energy storage system for wind applications[C]. PESC 2008, pp. 1762-1768.
[20]  Yu Zhang, Zhenhua Jiang.: Dynamic Power Sharing Strategy for Active Hybrid Energy Storage Systems [C]. VPPC 2009, 558-563.
[21]  丁若星. 微电网中的混合储能系统研究[D] 清华大学2014.
[22]  Ding Ruoxing. Research on Hybrid Energy Storage System in Micro Grid[D]. Tsinghua University 2014.
[23]  孔令怡, 廖丽莹, 张海武, 等. 电池储能系统在电力系统中的应用[J]. 电气开关, 2008(05): 61-62.
[24]  Kong Lingyi, Liao Liying, Zhang Haiwu et al. Application of Battery Energy Storage System in Power System[J]. Electric Switchgear, 2008(05): 61-62.
[25]  田军, 朱永强. 储能技术在分布式发电中的应用. 电气技术[J]. 2010(08): 第28-32+42页.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133