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A chaotic direct-sequence spread-spectrum system for underwater communication

机译:一种用于水下通信的混沌直序扩频系统

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The recent advances In acoustic modem technology have enabled the development of Underwater Acoustic Networks (UAN). Application interests include oceanographic information gathering, environmental monitoring or coastal defense. Due to its ability of simultaneously sharing the same frequency band for various users and the poor propagation conditions usually encountered in shallow water environment, the Code Division Multiple Access (CDMA) is a promising scheme for UAN. Recent results show that a standard CDMA direct-sequence spread spectrum approach is not sufficient to ensure Low Probabilities of Detection (LPD) and/or Interception (LP1), that is an unauthorized observer may notice that a communication signal is present. For many applications, this drawback is not acceptable. In this paper, the application of chaos to transmission of information is under investigation to achieve an LPI/LPD objective in an UAN context. Performance results of two receivers are shown for a single user through a realistic simulation scenario. An experiment at sea will be conducted by GESMA soon to confirm these first results.
机译:最近声学调制解调器技术的进步使得水下声学网络的发展(UAN)。应用兴趣包括海洋信息收集,环境监测或沿海防御。由于其同时为各种用户共享相同频段和较差的传播条件,并且通常在浅水环境中遇到的差,码分多址(CDMA)是uan的有希望的方案。最近的结果表明,标准CDMA直接序列扩频方法不足以确保检测的低概率(LPD)和/或拦截(LP1),即未授权的观察者可能会注意到存在通信信号。对于许多应用程序,此缺点是不可接受的。在本文中,正在调查混沌对信息传输的应用,以在UAN背景下实现LPI / LPD目标。通过逼真的模拟场景,为单个用户显示两个接收器的性能结果。海上的实验将很快通过Gesma进行,以确认这些第一次结果。

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