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基于被动时间反转的差分循环移位扩频水声通信
引用本文:景连友,何成兵,黄建国,孟庆微,张群飞.基于被动时间反转的差分循环移位扩频水声通信[J].上海交通大学学报,2014,48(10):1378-1383.
作者姓名:景连友  何成兵  黄建国  孟庆微  张群飞
作者单位:(1.西北工业大学 航海学院,西安 710072; 2.空军工程大学 信息与导航学院,西安 710077)
基金项目:国家自然科学基金(61101102,61271415,61401499);西北工业大学基础研究基金(JC20120219)资助项目
摘    要:针对在时变的水声信道中系统的精确同步十分困难,而传统循环移位扩频系统在没有精确同步的条件下,很难准确判决的问题,提出一种差分循环移位扩频水声通信方法.该方法采用差分方式调制,能够在系统粗同步的条件下准确解调信息;在接收端采用被动时间反转方法解调,抑制多径效应产生的影响,并降低系统的复杂度.湖上试验结果表明:所提方法在1.8km的通信距离下实现无误传输;对试验数据附加噪声和同步误差处理后,在信噪比为-8dB、同步误差为5/4移位单元情况下的误码率达到10-5.

关 键 词:水声通信    差分循环移位扩频    被动时间反转    同步  
收稿时间:2013-10-10

Differential Cyclic Shift Keying Spread-Spectrum Underwater Acoustic Communication Based on Passive Time-Reversal
JING Lian-you;HE Cheng-bing;HUANG Jian-guo;MENG Qin-wei;ZHANG Qun-fei.Differential Cyclic Shift Keying Spread-Spectrum Underwater Acoustic Communication Based on Passive Time-Reversal[J].Journal of Shanghai Jiaotong University,2014,48(10):1378-1383.
Authors:JING Lian-you;HE Cheng-bing;HUANG Jian-guo;MENG Qin-wei;ZHANG Qun-fei
Institution:(1. School of Marine Science and Technology, Northwestern Polytechnical University, Xi’an 710072, China; 2. School of Information and Navigation, Air Force Engineering University, Xi’an 710077, China)
Abstract:Accurate synchronization is more difficult in the time-variation channel. Conventional cyclic shift keying spread spectrum suffers performance impairment from timing errors in underwater acoustic communications. To solve this problem, a differential cyclic shift keying spread-spectrum underwater acoustic communication technique based on passive time-reversal was proposed. The proposed method requires only “coarse” synchronization at the symbol level. The passive time-reversal can suppress the inter-symbol interference caused by multipath. Lake experiment results show that the proposed method has no bit transmitting error at 1.8 km range; After adding the noise collected at the test, the BER is at 10-4 when SNR is -8 dB with the 5/4 shift units time error.
Keywords:underwater acoustic communication  differential cyclic shift keying spread spectrum  passive time-reversal  synchronization  
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