大气与环境光学学报 ›› 2014, Vol. 9 ›› Issue (5): 397-400.

• 光电技术 • 上一篇    下一篇

移动通信系统中光纤直放站的设计

胡 军1, 郭强2, 张百顺3   

  1. (1 陆军军官学院无人机系,安徽 合肥,230031; 
    2中国科学院安徽光学精密机械研究所,安徽 合肥,230031; 
    3 陆军军官学院远火系,安徽 合肥,230031)
  • 发布日期:2014-09-16
  • 通讯作者: 胡 军, (1969-),甘肃定西人,博士、副教授,长期从事光电通信工程、无人机装备技术与作战运用研究。 E-mail:jh50000@126.com
  • 作者简介:胡 军, (1969-),甘肃定西人,博士、副教授、硕士生导师,长期从事光电通信工程、无人机装备技术与作战运用研究。

Designing of Light Fiber Repeater in Mobile Communication System

HU Jun1, GUO Qiang2, ZHANG Bai-shun3   

  1. (1 Department of Unmanned Aerial Vehicle, Army Officer Academy of PLA, Hefei 230031, China; 
    2 Anhui Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Hefei 230031, China; 
    3 Army Officer Academy of PLA, Hefei 230031, China )
  • Online:2014-09-16

摘要:

移动通信系统引入光纤直放站后使基站接收端的噪声发生变化,通过对光纤直放站之间的传输距离分析以及引入光纤直放站后基站接收端的噪声变化分析发现,噪声增量主要由直放站增益和基站发射机至直放站的路径损耗决定,并进一步推导出光纤直放站的上行增益应比路径损耗小8 dB,而其下行增益的设计应充分考虑到系统上下行的平衡。最后,设计了系统噪声系数为3 dB,上行增益为30 dB,下行输出功率设为36 dBm的光纤直放站。实际投放后发现,网络盲区的比例减小到3.18%,说明该直放站的效果相当显著,并且性能稳定,与原基站兼容性好。

关键词: 移动通信, 光纤直放站, 噪声增量, 路径损耗

Abstract:

The noise of receiving end in mobile communication systems will change after the introduction of fiber optic repeater station. Through the analysis of the noise transmission distance between the fiber optic repeater and the noise change of the receiving end after introduction of fiber optic repeater station, that the noise increment mainly was decided by repeater gain repeater and base station transmitter to the path loss was found. Further, it was deduced that the fiber optic repeater uplink gain should be smaller than loss path by 8 dB, and its downstream gain should be designed to fully take into account the balance of the system up and down the line. Finally, a set of fiber optic repeater were designed with the system noise figure of 3 dB, uplink gain of 30 dB, and downlink power of 36 dBm. After actual delivery, it was found that the proportion of the network blind reduced to 3.18%, indicating that the repeater has quite remarkable effect, stable performance, and good compatibility with the original base.

Key words: mobile communication, light fiber repeater, noise change, path loss

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