Bernard Christophe, Bouvet Pierre-Jean, Pottier Antony, Forjonel Philippe
SEACom Department, L@bisen Yncréa-Ouest, 29228 Brest CEDEX 2, France.
Sensors (Basel). 2020 Mar 10;20(5):1527. doi: 10.3390/s20051527.
The objective of this paper is to provide a multiuser transmission technique for underwater acoustic communication in the framework of an Autonomous Underwater Vehicle (AUV) fleet. By using a variant of a Hyperbolically Frequency-Modulated (HFM) signal, we describe a new family of transmission techniques called MultiUser Chirp Spread Spectrum (MU-CSS), which allows a very simple matched-filter-based decoding. These techniques are expected to provide good resilience against multiuser interference while keeping good robustness to Underwater Acoustic (UWA) channel impairments like Doppler shift. Their implementation for the UWA scenario is described, and the performance results over a simulated shallow-water UWA channel are analyzed and compared against conventional Code-Division Multiple Access (CDMA) and Time-Division Multiple Access (TDMA) transmission. Finally, the feasibility and robustness of the proposed methods are verified over the underWater AcousTic channEl Replay benchMARK (Watermark), fed by several channel responses from sounding experiments performed in a lake.
本文的目的是在自主水下航行器(AUV)舰队的框架内,为水下声学通信提供一种多用户传输技术。通过使用双曲线频率调制(HFM)信号的一种变体,我们描述了一种称为多用户线性调频扩频(MU-CSS)的新型传输技术家族,它允许基于非常简单的匹配滤波器进行解码。预计这些技术在抵御多用户干扰方面具有良好的弹性,同时对诸如多普勒频移等水下声学(UWA)信道损伤保持良好的鲁棒性。描述了它们在UWA场景中的实现,并分析了在模拟浅海水下声学信道上的性能结果,并与传统的码分多址(CDMA)和时分多址(TDMA)传输进行了比较。最后,通过水下声学信道回放基准测试(Watermark)验证了所提方法的可行性和鲁棒性,并由在湖泊中进行的探测实验得到的多个信道响应提供数据支持。