Xinyuan Tian, Chengbing He, Jiachao Li, Run Zhang, Dengwen Chen
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引用次数: 0
摘要
有限的带宽限制了扩频水声通信系统的数据速率。本文提出了一种新的高速扩频水声通信方法,该方法利用扩频码指数调制(cims - ss)、循环移位键控(CSK)和最大比值组合频域均衡(MRC-FDE)。在这种方法中,信息位由CIM、CSK和m - mary PSK调制符号共同传输。采用具有良好相关特性的PeCAN多相序列作为扩频码,扩频码索引调制是从预定义的扩频码集中选择扩频码。CSK使用所选扩频码的循环移位版本获得比直接序列扩频(DSSS)系统更高的传输效率。在接收端设计一个低复杂度检测器,检测所选扩频码的码指数和循环移位值,从而对信号进行扩频解调。仿真和湖泊实验表明,该方法可以提高数据速率和频谱利用率,并能抵抗水声多径效应。
Code Index Modulation CSK Spread Spectrum Underwater Acoustic Communications
Limited bandwidth restricts the data rate of spread spectrum underwater acoustic communication systems. In this paper, we propose a novel high-rate spread spectrum underwater acoustic communication approach, which utilizes spread spectrum code index modulation (CIM-SS), cyclic shift keying (CSK) and maximum ratio combined frequency domain equalization (MRC-FDE). In this approach, information bits are jointly conveyed by CIM, CSK and the M-ary PSK modulated symbols. PeCAN polyphase sequences with excellent correlation characteristics are used as spreading codes, and spreading code index modulation is to select spreading code from predefined spreading code set. CSK uses the cyclic shifted version of the selected spreading codes to obtain higher transmission efficiency than direct sequence spread spectrum (DSSS) system. A low complexity detector is designed at the receiver to detect the code index and cyclic shift value of the selected spreading code, so as to despread and demodulate the symbols. Simulation and lake experiment show that the proposed method can improve the data rate and spectrum utilization, and resist the underwater acoustic multipath effect.