-
摘要:
建立了发射机射频电路简化模型,并利用该模型和非线性多项式模型,研究了发射机互调(IM)发射电平与射频前端滤波器插入损耗、干扰信号功率和频率偏差之间的关系,对当前发射机互调抑制比的定义进行了修正;分析了传统发射机互调抑制比测试方法的局限性,设计了一种新型的发射机互调测试链路配置,分析了测试链路关键物理参数间的关联关系,建立了测试数据处理模型,该方法扩宽了测试带宽和功率范围,降低了对测试器件的要求。对实际电台的测试结果表明,本文提出的理论分析结论和发射机互调抑制比测试方法正确有效。
Abstract:The simplified model of transmitter RF circuit was established. Using this model and the nonlinear polynomial model, we studied the relationship of transmitter intermodulation (IM) level between the insertion loss of RF filter, the power and the frequency offset of interference signal. According to results of the theoretical analysis, we found the imperfection of the definition of current transmitter IM attenuation ratio, and also propounded the new definition. We analyzed the limitation of the transmitter IM attenuation ratio test method. In order to get more accurate test data of transmitter IM level, we designed the new configuration of transmitter IM level test link. A new test method was proposed after analyzing the relationship between key physical parameters of the link. We provided the processing model of test data. The new method expands the frequency test band, relaxes the restrictions of transmitter power, and reduces the performance requirement of test device. The new method was used in IM test of a substantial broadcasting station, the test result and the theory analysis are validated, and the rationality and accuracy of the test methods are proved.
-
-
[1] Recommendation ITU-R SM.1446(04/2000).Definition and measurement of intermodulation products in transmitter using frequency, phase, or complex modulation techniques[S].ITU International Telecommunication Union, 2000:5-12. [2] 中国人民解放军总装备部.VHF/UHF频段发射机互调抑制比要求和测试方法:GJB 4471-2002[S].北京:总装备部军用标准出版发行部, 2003:1-6.The General Armament Departmant of PLA.The intermodulation attenuation ratio requirements and measuring methods for VHF/UHF band transmitters:GJB 4471-2002[S].Beijing:The General Armaments Department Army Published Standard Delivery, 2003:1-6(in Chinese). [3] 张亦明.移动通信中发射机互调干扰的数学模型[J].通信学报, 1990, 11(3):72-76. http://www.cnki.com.cn/Article/CJFDTOTAL-TXXB199003011.htmZHANG Y M.The mathematical models of transmitter intermodulation interferences in mobile communication[J].Journal of China Institute Communications, 1990, 11(3):72-76(in Chinese). http://www.cnki.com.cn/Article/CJFDTOTAL-TXXB199003011.htm [4] 李胤, 郑重, 刘久文, 等.基于行为级建模的通信电台同址干扰预测分析[J].电子测量技术, 2011, 34(11):122-126. http://www.cnki.com.cn/Article/CJFDTOTAL-DZCL201111035.htmLI Y, ZHENG Z, LIU J W, et al.Prediction and analysis of co-site interference between radio communications based on behavioral modeling[J].Electronic Measurement Technology, 2011, 34(11):122-126(in Chinese). http://www.cnki.com.cn/Article/CJFDTOTAL-DZCL201111035.htm [5] 杨会杰, 王烟青, 杨昭, 等.甚高频无线通信系统发射机互调干扰研究[J].通信技术, 2014, 47(8):865-868. http://www.cnki.com.cn/Article/CJFDTOTAL-TXJS201408005.htmYANG H J, WANG Y Q, YANG Z, et al.Study on transmitter intermodulation interference for VHF radio communication system[J].Communications Technology, 2014, 47(8):865-868(in Chinese). http://www.cnki.com.cn/Article/CJFDTOTAL-TXJS201408005.htm [6] HAYASHI H, MURAGUCHI M.A low distortion technique for reducing transmitter intermodulation[J].IEICE Transactions on Electronics, 1997, 80(6):768-774. https://www.researchgate.net/publication/293515393_A_low_distortion_technique_for_reducing_transmitter_intermodulation [7] EAKIN J.Application notes on control of base station transmitter reradiated intermodulation in the land mobile services[J].IEEE Transactions on Vehicular Communications, 1966, 15(1):6-12. doi: 10.1109/TVC.1966.33018 [8] SHAIRI N A, IBRAHIM I M, RAHMAN T A.Third order intermodulation distortion effect on the constellation error in RF transmitter of IEEE 802.11a WLAN system[C]//IEEE Sym-posium on Industrial Electronics & Application.Piscataway, NJ:IEEE Press, 2011, 4(1):223-226. [9] 易炎高.基站电调天线无源互调研究[D].广州:华南理工大学, 2012:5-15.YI Y G.Research on passive intermodulation in the base station antennas[D].Guangzhou:South China University of Technology, 2012:5-15(in Chinese). [10] ZHU A, BRAZIL T J.Behavioral modeling of RF power amplifiers based on pruned Volterra series[J].IEEE Microwave and Wireless Components Letters, 2004, 14(12):563-565. doi: 10.1109/LMWC.2004.837380 [11] PEDRO J C, MAAS S A.A comparative overview of microwave and wireless power-amplifier behavioral modeling approaches[J].IEEE Transactions on Microwave Theory and Techniques, 2005, 53(4):1150-1163. doi: 10.1109/TMTT.2005.845723 [12] MASS S A.Nonlinear microwave circuits[M].Norwod:Artech House, 1988:17-19. [13] HUNTER I W, KORENBERG M J.The identification of nonlinear biological systems:Wiener and Hammerstein caseade models[J].Biological Cybernetics, 1986, 55(2):135-144. doi: 10.1007%2FBF00341929 [14] 刘辉.射频功率放大器线性化技术研究[D].西安:西安电子科技大学, 2005:8-20.LIU H.Research on linearization technologies for radio frequency power amplifier[D].Xi'an:Xidian University, 2005:8-20(in Chinese). [15] 华晓杰.射频功率放大器大信号表征及频域非线性特征建模[D].哈尔滨:哈尔滨工业大学, 2008:2-19.HUA X J.Research on large signal frequency domain behavioral modeling for RF power amplifier[D]. Harbin:Harbin Institute of Technology, 2008:2-19(in Chinese).