van Walree Paul A, Neasham Jeffrey A, Schrijver Marco C
The Netherlands Organisation for Applied Scientific Research TNO, Underwater Technology Group, Oude Waalsdorperweg 63, PO Box 96864, 2509 JG The Hague, The Netherlands.
J Acoust Soc Am. 2007 Dec;122(6):3495-506. doi: 10.1121/1.2793706.
High-rate acoustic communication experiments were conducted in a dynamic estuarine environment. Two current profilers deployed in a shipping lane were interfaced with acoustic modems, which modulated and transmitted the sensor readings every 200 s over a period of four days. QPSK modulation was employed at a raw data rate of 8 kbits on a 12-kHz carrier. Two 16-element hydrophone arrays, one horizontal and one vertical, were deployed near the shore. A multichannel decision-feedback equalizer was used to demodulate the modem signals received on both arrays. Long-term statistical analysis reveals the effects of the tidal cycle, subsea unit location, attenuation by the wake of passing vessels, and high levels of ship-generated noise on the fidelity of the communication links. The use of receiver arrays enables vast improvement in the overall reliability of data delivery compared with a single-receiver system, with performance depending strongly on array orientation. The vertical array offers the best performance overall, although the horizontal array proves more robust against shipping noise. Spatial coherence estimates, variation of array aperture, and inspection of array angular responses point to adaptive beamforming and coherent combining as the chief mechanisms of array gain.
在动态河口环境中进行了高速声学通信实验。部署在航道中的两个海流剖面仪与声学调制解调器相连,声学调制解调器在四天的时间里每200秒调制并传输一次传感器读数。在12kHz载波上以8kbits的原始数据速率采用QPSK调制。在岸边附近部署了两个16元水听器阵列,一个水平阵列和一个垂直阵列。使用多通道判决反馈均衡器对两个阵列接收到的调制解调器信号进行解调。长期统计分析揭示了潮汐周期、海底单元位置、过往船只尾流造成的衰减以及船舶产生的高强度噪声对通信链路保真度的影响。与单接收器系统相比,使用接收器阵列可大幅提高数据传输的整体可靠性,其性能在很大程度上取决于阵列方向。垂直阵列总体性能最佳,不过水平阵列在抵御船舶噪声方面表现得更为稳健。空间相干估计、阵列孔径变化以及阵列角度响应检查表明,自适应波束形成和相干合并是阵列增益的主要机制。