[1]ZHDANOV M S. Electromagnetic geophysics: Notes from the past and the road ahead[J]. Geophysics, 2010, 75(5): 75A49-75A66.
[2]AN Z G, DI Q Y, FU C M, et al. Geophysical evidence through a CSAMT survey of the deep geological structure at a potential radioactive waste site at Beishan, Gansu, China[J]. Journal of Environmental and Engineering Geophysics, 2007, 18(1): 43-54.
[3]谭国贞, 付志红, 周雒维, 等. 瞬变电磁发射机控制系统设计[J]. 电测与仪表, 2006, 43(3): 8-12.
TAN Guozhen, FU Zhihong, ZHOU Luowei, et al. A design of control for transient electromagnetic transmitter[J]. Electrical Measurement & Instrumentation, 2006, 43(3): 8-12.
[4]蒋奇云. 广域电磁测深仪关键技术研究[D]. 长沙: 中南大学地球科学与信息物理学院, 2010.
JIANG Qiyun. Study on the key technology of wide field electromagnetic sounding instrument[D]. Chang-sha: School of Geoscience and Info-Physics, Central South University, 2010.
[5]YU F, ZHANG Y M. Modeling and control method for high-power electromagnetic transmitter power supplies[J]. Journal of Power Electronics, 2013, 13(4): 679-691.
[6]XUE K C, WANG S, LIN J, et al. Loss analysis and air-cooled design for a cascaded electrical source transmitter[J]. Journal of Power Electronics, 2015, 15(2): 530-543.
[7]冯金兰. 基于DSP & FPGA的地面电磁探测发射机的设计与研究[D]. 北京: 北京工业大学信息学部, 2014.
FENG Jinlan. Research of surface electromagnetic probe transmitter based on DSP & FPGA[D]. Beijing: Faculty of Information Technology, Beijing University of Technology, 2014.
[8]Zonge International. GDP-32/24 multifunction transmitter specification sheet[EB/OL]. (2016-07-14)[2017-03-05]. http:∥www.zonge.com/transmitter.html.
[9]真齐辉, 底青云, 刘汉北. 励磁控制的CSAMT发送机若干技术研究[J]. 地球物理学报, 2013, 56(11): 3751-3760.
ZHEN Qihui, DI Qingyun, LIU Hanbei. Key technology study on CSAMT transmitter with excitation control[J]. Chinese Journal Geophysics, 2013, 56(11): 3751-3760.
[10]徐德鸿, 李睿, 刘昌金, 等. 现代整流技术: 有源功率因数校正技术[M]. 北京: 机械工业出版社, 2013: 8-16.
XU Dehong, LI Rui, LIU Changjin, et al. Modern rectifier technology: Active power factor correction technology[M]. Beijing: Machinery Industry Press, 2013: 8-16.
[11]WU R, DEWAN S B, SLEMON G R. Analysis of an ac-to-dc voltage source converter using PWM with phase and amplitude control[J]. IEEE Transactions on Industry Applications, 1991, 27(2): 355-364.
[12]杨勇, 阮毅. 三相并网逆变器直接功率控制[J]. 电力自动化设备, 2011, 31(9): 54-59.
YANG Yong, RUAN Yi. Direct power control for three-phase grid-connected inverters[J]. Electric Power Automation Equipment, 2011, 31(9): 54-59.
[13]BOUAFIA A, GAUBERT J P, KRIM F. Predictive direct power control of three-phase pulsewidth modulation (PWM) rectifier using space-vector modulation (SVM)[J]. IEEE Transactions on Power Electronics, 2010, 25(1): 228-236.
[14]汪万伟, 尹华杰, 管霖. 双闭环矢量控制的电压型PWM整流器参数整定[J]. 电工技术学报, 2010, 25(2): 67-72.
WANG Wanwei, YIN Huajie, GUAN Lin. Parameter setting for double closed-loop vector control of voltage source PWM rectifier[J]. Transactions of China Electrotechnical Society, 2010, 25(2): 67-72.
[15]石健将, 李荣贵, 张平, 等. 基于新型电压电流双闭环控制的轴带发电机PWM整流器研究[J]. 电工技术学报, 2014, 29(6): 189-195.
SHI Jianjiang, LI Ronggui, ZHANG Ping, et al. Research on shaft-generator PWM rectifier based on novel voltage-current dual-loop control[J]. Transactions of China Electrotechnical Society, 2014, 29(6): 189-195.
[16]张越雷, 高剑, 宋广兴, 等. PWM整流器控制下电感参数对永磁同步发电机性能的影响[J]. 微电机, 2016, 49(6): 17-20.
ZHANG Yuelei, GAO Jian, SONG Guangxing, et al. The influence of inductance parameters on the performance of permanent magnet synchronous generator system controlled by PWM inverter[J]. Micromotors, 2016, 49(6): 17-20.
[17]王成元, 夏加宽, 孙宜标. 现在电机控制技术[M]. 2版. 北京: 机械工业出版社, 2015: 123-126.
WANG Chengyuan, XIA Jiakuan, SUN Yibiao. Modern motor control technology[M]. 2nd ed. Beijing: Machinery Industry Press, 2015: 123-126.
[18]张兴, 张崇巍. PWM整流器及其控制[M]. 北京: 机械工业出版社, 2012: 88-105.
ZHANG Xing, ZHANG Chongwei. PWM rectifier and its control strategy[M]. Beijing: Machinery Industry Press, 2012: 88-105. |