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...

可编程电网故障模拟电源的设计

, PP. 91-97

Keywords: 风力发电,并网规范,电网故障,模拟电源,PWM变换器

Full-Text   Cite this paper   Add to My Lib

Abstract:

当前国际风电界相继提出各种风电系统并网规范,要求并网风电机组在电网出现一定的电压跌落、不平衡、谐波畸变、频率漂移、相角跳变等故障情况下仍能与电网保持连接而不解列。为了研究和测试风电机组的故障穿越运行能力,需要设计各种特殊的试验电源装置以模拟各类电网故障。本文就此提出了一种新型可编程电网故障模拟电源的设计方案,能够较为完整地模拟风电并网规范中要求的各类电网故障。实验结果表明该装置操作简单、灵活可靠,故障种类齐全,故障参数柔性可调,且拓展性强,可作为风电机组及其他电力电子设备出厂性能考核的重要测试装置。

References

[1]  He Yikang, Zhou Peng. Overview of the low voltage ride-through technology for variable speed constant frequency doubly fed wind power generation systems[J]. Transactions of China Electrotechnical Society, 2009, 24(9): 140-146.
[2]  Xu L. Coordinated control of DFIG’s rotor and grid side converters during network unbalance[J]. IEEE Transactions of Power Electronics, 2008, 23(3): 1041-1049.
[3]  Oranpiroj K, Premrudeeprechacharn S, Higuchi K. Sag wave for the 3-phase 4-wire voltage sag generator prototype[C]. IEEE International Conference on Control Applications(CCA), 2010: 2209-2212.
[4]  Oranpiroj K, Premrudeepreechacharn S, Ngoudech M, et al. The 3-phase 4-wire voltage sag generator based on three dimensions space vector modulation in abc coordinates[C]. IEEE International Symposium on Industrial Electronics, 2009: 275- 280.
[5]  Zeng Rong, Nian Heng, Zhou Peng. A three-phase programmable voltage sag generator for low voltage ride-through capability test of wind turbines[C]. Energy Conversion Congress and Exposition, 2010: 305-311.
[6]  Kumsuwan Y, Boonmee C, Premrudeepreechacharn S. Implementation of a 1kVA programmable balanced three-phase voltage sag generator[C]. Proceedings of Sixth Annual Conference ECTI, 2009, 1: 46-49.
[7]  Wessels C, Lohde R, Fuchs FW. Transformer based voltage sag generator to perform LVRT and HVRT tests in the laboratory[C]. 14th Annual Conference on Power Electronics and Motion Control(EPE/PEMC), 2010: T11-8-T11-13.
[8]  胡书举, 李建林, 梁亮, 等. 风力发电用电压跌落发生器研究综述[J]. 电力自动化设备, 2008, 28(2): 101-103.
[9]  Hu Shuju, Li Jianlin, Liang liang, et al. Review of voltage sag generator for wind power[J]. Electric Power Automation Equipment, 2008, 28(2): 101-103.
[10]  中国电力科学研究院. 风电场接入电网技术规定(修订版)[R]. 国家电网公司, 2009年.
[11]  贺益康, 周鹏. 变速恒频双馈异步风力发电系统低电压穿越技术综述[J]. 电工技术学报, 2009, 24(9): 140-146.
[12]  Hu Jiabing, Nian Heng, Xu Hailiang. Dynamic modeling and improved control of DFIG under distorted grid voltage conditions[J]. IEEE Transactions Energy Convers, 2011, 26(1): 163-175.
[13]  Iyoda I, Abe Y, Ise T, et al. A new parameter of voltage sags and its effect on inverters of PV systems surveyed by a newly developed Voltage Sag Generator[C]. IECON 2010-36th Annual Conference on IEEE Industrial Electronics Society, 2010: 2759-2764.
[14]  Boonmee C, Kumsuwa Y, Premrudeepreechacharn S. Implementation of real time three phase balanced voltage sag generator 1kVA: Using microcontroller and PC control[C]. ICCAS-SICE, 2009: 903-907.
[15]  Hu J, He Y, Xu L, et al. Improved control of DFIG systems during network unbalance using PI-R current regulators[J]. IEEE Transactions on Industrial Electronics, 2009, 56(2): 439-459.
[16]  Tan P C, Loh P C, Homes D G. High performance harmonic extraction algorithm for a 25kV traction power quality conditioner[J]. IEE Proceedings on Electric Power Application, 2004, 151(5): 505-512.
[17]  胡家兵, 贺益康, 王宏胜, 等. 不平衡电网电压下双馈感应发电机网侧和转子侧变换器的协同控制[J]. 中国电机工程学报, 2010, 30(9): 97-104.
[18]  Hu Jiabing, He Yikang, Wang Hongsheng, et al. Coordinated control of grid-and rotor-side converters of doubly-fed induction generator under unbalanced network voltage conditions[J]. Proceedings of the CSEE, 2010, 30(9): 97-104.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133