一种新的可再生能源并网发电分层结构A novel hierarchical structure for grid integration power generation using renewable energy
杨胡萍,江振涛,严飞飞
摘要(Abstract):
对可再生能源及其发电、直流输电线路、储能装置等进行研究,提出一种新的可再生能源并网发电分层结构。该分层结构的主要组成部分包括DC-DC变换器、直流输电、储能装置和并网。DC-DC变换器将产生的电压转换为高电压,以便在直流输电线路上传输。类似地,降压型DC-DC变换器用于将传输线电压转化为低电压,便于储能和配电网并网。DCAC逆变器使用旧的配电网信号作为样本,将直流信号变换为交流信号。仿真模拟验证了所有变换器均能有效工作以及整个分层结构的可行性。
关键词(KeyWords): 可再生能源;储能装置;并网;配电网;DC-DC变换器;DC-AC逆变器
基金项目(Foundation): 国家自然科学基金项目(51367014)~~
作者(Author): 杨胡萍,江振涛,严飞飞
DOI: 10.16652/j.issn.1004-373x.2018.20.015
参考文献(References):
- [1] CHU S,MAJUMDAR A. Opportunities and challenges for a sustainable energy future[J]. Nature,2012,488(7411):294-303.
- [2]白建华,辛颂旭,刘俊,等.中国实现高比例可再生能源发展路径研究[J].中国电机工程学报,2015,35(14):3699-3705.BAI Jianhua,XIN Songxu,LIU Jun,et al. Roadmap of realizing the high penetration renewable energy in China[J]. Proceedings of the CSEE,2015,35(14):3699-3705.
- [3]徐敏杰,胡兆光,谭显东,等.中国中长期能源和电力需求及碳排放情景分析[J].中国电力,2012,45(4):101-107.XU Minjie,HU Zhaoguang,TAN Xiandong,et al. Scenario analysis on mid-long term energy and electricity demand and carbon emission in China[J]. Electric power,2012,45(4):101-107.
- [4]梁旭明,张平,常勇.高压直流输电技术现状及发展前景[J].电网技术,2012,36(4):1-9.LIANG Xuming,ZHANG Ping,CHANG Yong. Recent advances in high-voltage direct-current power transmission and its developing potential[J]. Power system technology,2012,36(4):1-9.
- [5]马为民,吴方劼,杨一鸣,等.柔性直流输电技术的现状及应用前景分析[J].高电压技术,2014,40(8):2429-2439.MA Weimin, WU Fangjie, YANG Yiming, et al. Flexible HVDC transmission technology′s today and tomorrow[J]. High voltage engineering,2014,40(8):2429-2439.
- [6]汤广福,庞辉,贺之渊.先进交直流输电技术在中国的发展与应用[J].中国电机工程学报,2016,36(7):1760-1771.TANG Guangfu,PANG Hui,HE Zhiyuan. R&D and application of advanced power transmission technology in China[J].Proceedings of the CSEE,2016,36(7):1760-1771.
- [7]刘俊.可再生能源发电并网关键技术的研究现状与趋势分析[J].陕西电力,2013,41(4):47-52.LIU Jun. Status and trend analysis on gird integration key technologies of renewable energy power generation[J]. Shaanxi electric power,2013,41(4):47-52.
- [8]王睿淳,闫斌杰,刘晓立,等.储能对可再生能源并网发电的支撑作用[J].水电能源科学,2014,32(2):192-196.WANG Ruichun,YAN Binjie,LIU Xiaoli,et al. Support of energy storage for renewable energy integrated into gird[J]. Water resources and power,2014,32(2):192-196.
- [9]袁晓,赵敏荣,胡希杰,等.太阳能光伏发电并网技术的应用[J].上海电力,2006(4):342-347.YUAN Xiao,ZHAO Minrong,HU Xijie,et al. Application of solar photovoltaic power generation grid-connected technology[J]. Shanghai electric power,2006(4):342-347.
- [10]潘琪,徐洋,谢夏寅,等.基于无功源的分布式光伏电站无功补偿协调控制系统及方法[J].电测与仪表,2015,52(3):101-106.PAN Qi,XU Yang,XIE Xiayin,et al. Coordination control system and method for reactive compensation of the distributed PV power station based on reactive power source[J]. Electrical measurement&instrumentation,2015,52(3):101-106.
- [11]刘杨华,吴政球,涂有庆,等.分布式发电及其并网技术综述[J].电网技术,2008,32(15):71-76.LIU Yanghua,WU Zhengqiu,TU Youqing,et al. A survey on distributed generation and its networking technology[J].Power system technology,2008,32(15):71-76.
- [12] HARDAN F. Grid-connection study of the centralized photovoltaic power system in Zarzitta[J]. International journal of distributed energy resources,2006,2(4):325-342.
- [13]刘方霆,王永攀,朱忠尼,等.两路交错并联DC/DC变换器软开关控制策略研究[J].电力电子技术,2013,47(9):1-3.LIU Fangting,WANG Yongpan,ZHU Zhongni,et al. Research on control strategy for ZVS of double interleaving DC/DC converter[J]. Power electronics,2013,47(9):1-3.
- [14]朱润卿,刘军,徐波.一种软开关的交错并联Buck/Boost双向DC/DC变换器[J].通信电源技术,2016,33(5):1-4.ZHU Runqing,LIU Jun,XU Bo. A type of soft-switching and interleaving bi-directional DC/DC converter[J]. Telecom power technology,2016,33(5):1-4.