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高压电器  2015 

高海拔光伏电站电网扰动模拟测试系统移动检测平台的设计应用

DOI: 10.13296/j.1001-1609.hva.2015.10.001, PP. 1-7

Keywords: 高海拔地区,光伏电站,电网故障,阻抗分压

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Abstract:

文中工作的开展为解决中国光伏发电规模化接入的技术难题,掌握各类型电力电子接口的新能源发电装置检测技术,促进新能源发电装置设计水平,具有极大的意义。根据高海拔地区光伏电站的实际需求,笔者提出了一种采用电网模拟器作为扰动和高电压扰动源,同时实现频扰和高电压扰动等功能,可满足35kV和10kV的电压等级的检测要求。笔者设计的高海拔电网适应性移动检测系统,应用于4000m以下高海拔大中型光伏电站的移动检测,满足容量1.5MW及以下光伏电站单元检测的要求,能够模拟电网稳态时的电压和频率扰动,检测光伏电站适应电网扰动的能力。该系统在青海海南州共和县黄河水电200MW光伏电站开展了电网故障现场测试实验,验证了移动检测平台具有实际应用价值。

References

[1]  李 晶,许洪华,赵海翔,等. 并网光伏电站动态建模及仿真分析[J]. 电力系统自动化,2008,32(24):83-87. LI Jing,XU Honghua,ZHAO Haixiang,et al. Dynamic modeling and simulation of the grid-connected PV power station[J]. Automation of Electric Power Systems,2008,32(24):83-87.
[2]  IEEE Std 1159―1995 IEEE recommended practice for monitoring electric power quality[S]. 1995.
[3]  周党生,谢 磊,盛小军. 具有谐波输出功能的大容量电网扰动发生装置[J]. 电力电子技术,2014,48(5):21-23. ZHOU Dangsheng,XIE Lei,SHENG Xiaojun. Large capacity grid disturbance generator with harmonics[J]. Power Electronics,2014,48(5):21-23.
[4]  HU Shuju,LI Jianlin,LIANG Liang,et al. A cost-effective solution of VSG suitable for wind power system[J]. Electrotechnical Application,2007,26(11):50-53.
[5]  刘 刚,陈 涛,严干贵,等. 背靠背四象限变流器的控制系统设计[J]. 电力电子技术,2007,41(11):1-3. LIU Gang,CHEN Tao,YAN Gangui,et al. Design of control system for back-to-back four-quadrant converter[J]. Power Electronics,2007,41(11):1-3.
[6]  吴凤江,孙秀冬,孙 力,等. 电网功率可控型太阳能电池―电网―蓄电池混合供电不间断逆变电源[J]. 电力自动化设备,2011,31(6):11-15. WU Fengjiang,SUN Xiudong,SUN Li,et al. Grid-power-controllable UPS powered by photovoltaic cell, grid and battery[J]. Electric Power Automation Equipment,2011,31(6):11-15.
[7]  张婷婷. 风力发电PWM整流的自适应滑模控制研究[D].湘潭:湖南科技大学,2012. ZHANG Tingting. Research of adaptive synovial wind power PWM rectifier control[D]. Xiangtan: Science and Technology of Hunan University,2012.
[8]  许 峰,周克亮,程 明. 风力发电用电压源型PWM整流控制器的分析和设计[J]. 电气应用,2010,29(17):28-31. XU Feng,ZHOU Keliang,CHENG Ming. Analysis and design of the controller of type wind power with voltage source PWM rectifier[J]. Electrotechnical Application,2010,29(17):28-31.
[9]  孙炳海,王 剑,李永东. 回馈式级联型变频器PWM整流控制及其谐波分析[J]. 电工技术学报,2011,26(7):210-215. SUN Binghai,WANG Jian,LI Yongdong. PWM rectifier control for regenerative cascade inverter and its harmonic analysis[J]. Transactions of China Electrotechnical Society,2011,26(7):210-215.
[10]  赵 晖. 针对电力机车牵引系统的单相整流有源电力滤波器[D]. 武汉:华中科技大学,2013. ZHAO Hui. Active power filter for single-phase rectifier based on the traction converter[D]. Wuhan: Huazhong University of Science & Technology,2013.
[11]  黄 明. 基于PWM控制的动态无功补偿装置研究[J]. 电工电气,2012(5):21-23. HUANG Ming. Research on dynamic reactive power compensation device based on pulse width modulation control[J]. Electrotechnics Electric,2012(5):21-23.
[12]  鞠儒生. 统一潮流控制器智能控制方法研究[D]. 长沙:湖南大学,2002. JU Rusheng. Method unified power flow controller intelligent control research[D]. Changsha: Hunan University,2002.
[13]  杨 琪. 统一潮流控制器(UPFC)的智能潮流控制方法研究[D]. 长沙:湖南大学,2003. YANG Qi. Agreed to flow controller(UPFC) trend of intelligent control method study[D]. Changsha: Hunan University, 2003.
[14]  许 鹏. PWM整流控制策略研究[D]. 哈尔滨:哈尔滨工程大学,2013. XU Peng. PWM rectifier control strategy research[D]. Harbin: Harbin Engineering University, 2013.
[15]  王 成,杨亚萍. 单相PWM整流电路控制方法及仿真分析[J]. 西安航空技术高等专科学校学报,2011,29(3):48-51. WANG Cheng,YANG Yaping. Control method & emulation analysis of single-phase PWM rectifier circuit[J]. Journal of Xi’an Aerotechnical College,2011,29(3):48-51.
[16]  GB/T 19964―2012 光伏发电站接入电力系统技术规定[S]. 2012. GB/T 19964―2012 Technical requirments for connecting photovoltaic power station to power system[S].2012.

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