众所周知水下电磁环境复杂,在水下采用电缆传输电信号非常容易受到海洋电磁环境干扰,并且随着距离的增加,电信号受到干扰和衰减也就越大。因此水下中长距离的信号传输采用光电复合缆传输是一个比较好的选择,光纤用来传递水声信号,电缆用来传输电力。因此本文设计了一种基于光电复合缆的水声信号采集发射传输系统,能够很好地解决上述问题。本设计将要采集和发射的水声模拟信号在采集发射端和主机端转换成光信号,端到端之间的传输采用光信号,而采集发射端的供电则由光电复合缆的电缆提供。
As we all know, electromagnetic environment underwater is complex, electrical signal on the electric cable underwater is easy to be jammed by electromagnetic environment underwater. And with distance increasing, electrical signal is jammed and decreases more. So long distance transferring underwater is very fit for photoelectric composite cable, that signal for fiber and electric power for electric cable. Therefore this paper designs a kind of collecting-launching and transferring system of underwater acoustic based on photoelectric composite cable, which can solve the problem. This design transmit electrical signal of collecting-launching to photo signal on the equipment and computing chassis. It uses fiber to transfer photo signal of underwater acoustic point to point. And electric power for equipment is transferred by the electric cable of photoelectric composite cable.
2017,39(4): 140-143 收稿日期:2016-09-25
DOI:10.3404/j.issn.1672-7619.2017.04.028
分类号:TB52
基金项目:国防基础科研计划资助项目(A0820132027)
作者简介:潘云龙(1988-),男,硕士,工程师,研究方向为水下声信号处理及电子技术等。
参考文献:
[1] 陈陶陶, 方志, 赵龙章, 等. 光电传输系统在电力系统测量中的应用[J]. 继电器, 2007(15):77-84.
[2] 李志强, 张俊华. 光电复合缆在接入网中的应用[J]. 电信工程技术与标准化, 2012(3):22-26.
[3] 宋涛, 张斌, 罗倩倩. 光电转换电路的设计与优化[J]. 光电技术应用, 2010(6):46-48.
[4] 马向玲, 杨辉, 王海玲, 等. 基于FPGA的多路数据光纤传输系统设计与实现[J]. 计算机测量与控制, 2011.19(2):363-366. MA Xiang-ling, YANG Hui, WANG Hai-ling, et al. Design and implementation of optical fiber transmission system of multi-channel data based on FPGA[J]. Computer Measurement & Clontrol, 2011, 19(2):363-366.
[5] 韩晗. 基于FPGA的实时数字化光纤传输方案研究[D]. 杭州:浙江大学, 2010.