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Experimental testing of asymmetric underwater acoustic networks

机译:非对称水下声网络的实验测试

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The coordinated operation of multiple vehicles within the framework of multipoint non-cabled observatories and offshore activities sprung the necessity for complex underwater acoustic networks (UANs). An example of such UAN consisting of fixed and mobile underwater nodes, was recently developed and tested at sea. A star-shaped network topology was adopted, where wide area network (WAN) integration was ensured through an asymmetric underwater master node composed of an acoustic modem, for low-data-rate downlink from WAN to UAN, and a multiple receiver antenna for single-input-multiple-output (SIMO) high-priority high-data-rate uplink, from UAN to WAN. This paper focuses on the performance of the high-priority SIMO uplink combining multichannel geometry-adapted passive Time Reversal (pTR) and single Decision Feedback Equalizer (DFE) nomenclatureDFEDecision Feedback Equalizer. High data-rate and sustainable communications for mobile and fixed nodes were considered. Two experimental data sets were used: one from the UAN10 sea trial (Pianosa island, Italy, September 2010) for a moving source and UAN11 (Trondheim Fjord area, Norway, May 2011) for a fixed source. BPSK/QPSK signaling, data-rate upto 4000 bps and a source speed upto 0.5 m/s, were considered for carrier frequencies ranging from 5kHz to 25.6kHz. Temporal coherence is shown to be a key factor, determining the performance of pTR-based techniques. Moreover, the geometry-adapted pTR is shown to sustain the temporal coherence in case of geometry changes.
机译:在多点非电缆天文台和海上活动的框架内,多辆车的协调运行产生了复杂的水下声网(UAN)的必要性。最近在海上开发并测试了由固定和移动水下节点组成的这种UAN的示例。采用星形网络拓扑,其中通过非对称水下主节点(由声调制解调器组成)确保广域网(WAN)集成,该主节点用于从WAN到UAN的低数据速率下行链路,以及用于单个天线的多接收器天线从UAN到WAN的-input-multiple-output(SIMO)高优先级高数据速率上行链路。本文着重介绍了高优先级SIMO上行链路的性能,该上行链路结合了多通道几何自适应无源时间反转(pTR)和单决策反馈均衡器(DFE)术语DFE决策反馈均衡器。考虑了移动节点和固定节点的高数据速率和可持续通信。使用了两个实验数据集:一个来自UAN10海上试验(意大利的皮诺萨岛,2010年9月)作为移动源,另一个是UAN11(固定的挪威特隆海姆峡湾地区,2011年5月)。对于5kHz至25.6kHz的载波频率,考虑了BPSK / QPSK信令,高达4000 bps的数据速率和高达0.5 m / s的信号源速度。时间一致性是决定基于pTR的技术性能的关键因素。此外,在几何形状变化的情况下,显示了适应几何形状的pTR可以维持时间相干性。

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