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移动基站天线电子下倾角检测系统设计与仿真
发表时间:2018-11-30 浏览量:1193 下载量:305
全部作者: | 孔明昊,张秀再,王玮蔚,刘雨 |
作者单位: | 南京信息工程大学电子与信息工程学院;南京信息工程大学江苏省大气环境与装备技术协同创新中心 |
摘 要: | 为提高移动通信网络优化的工作效率,设计一种新型电子下倾角检测系统。该系统根据基站天线电子下倾角取决于天线振子相位差的关系,通过检测相位差,计算电子下倾角。系统基于中国移动4G基站的2.35 GHz载波频率,设计了3 dB耦合器、微波振荡器、单平衡混频器及微波低通滤波器,由ADS软件进行仿真试验。仿真结果表明,该系统具有较高的电子下倾角检测精度,可行性较好。且该系统可通过修改电路参数,应用于其他频段天线电子下倾角的检测,具有较强的适用性。 |
关 键 词: | 电子、通信与自动控制技术其他学科;4G基站;电子下倾角检测;ADS;仿真试验 |
Title: | Design and simulation of electronic declination angle detection system for mobile station antenna |
Author: | KONG Minghao, ZHANG Xiuzai, WANG Weiwei, LIU Yu |
Organization: | School of Electronic and Information Engineering, Nanjing University of Information Science and Technology; Jiangsu Collaborative Innovation Center on Atmospheric Environment and Equipment Technology (CICAEET), Nanjing University of Information Science and Technology |
Abstract: | In order to improve the work efficiency of mobile communication network optimization, a new type of electronic declination angle detection system is designed. According to the relationship between the antenna electronic declination angle and the phase difference of the antenna element, the system calculates the electronic declination angle by detecting the phase difference. Based on the 2.35 GHz carrier frequency of China Mobile 4G base station, the system designs 3 dB coupler, microwave oscillator, single balanced mixer and microwave low-pass filter. The simulation test is carried out by ADS software. The simulation results show that the system has a high detection accuracy of electronic declination angle, and the feasibility is good. By modifying the circuit parameters, the system can be applied to the detection of the antenna electronic declination angle in other frequency bands and has strong applicability. |
Key words: | other subjects of electronics, communication and autocontrol technology; 4G base station; electronic declination angle detection; ADS; simulation test |
发表期数: | 2018年11月第22期 |
引用格式: | 孔明昊,张秀再,王玮蔚,等. 移动基站天线电子下倾角检测系统设计与仿真[J]. 中国科技论文在线精品论文,2018,11(22):2322-2331. |

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