首页> 外文期刊>Journal of atmospheric and oceanic technology >Networked Acoustic Modems for Real-Time Data Telemetry from Distributed Subsurface Instruments in the Coastal Ocean: Application to Array of Bottom-Mounted ADCPs
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Networked Acoustic Modems for Real-Time Data Telemetry from Distributed Subsurface Instruments in the Coastal Ocean: Application to Array of Bottom-Mounted ADCPs

机译:用于沿海海洋中分布式地下仪器的实时数据遥测的联网声学调制解调器:在底装ADCP阵列中的应用

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Through the winter and spring of 2002, networked acoustic modems demonstrated real-time wireless data telemetry from an array of bottom-mounted acoustic Doppler current profilers (ADCPs) on the inner continental shelf 20-60 m deep off of Montauk Point, New York. To achieve typical temporal and spatial sampling needs for data assimilative numerical modeling, the array spanned 10 km X 10 km and transmitted data each ~2 h. Network nodes included five sensors, each an ADCP with acoustic modem housed in a trawl-resistant bottom frame; five repeaters that are individual acoustic modems on near-bottom taut-wire moorings; and two gateways, each a buoy with a subsurface acoustic modem and topside cellular modem allowing for two-way communication with the shore. Deliveries from an ADCP adjacent to the gateway buoy were more than 97% successful through both winter and spring. Deliveries from ADCPs 5 km from the gateway averaged 25% (86%) reliability in winter (spring). Winter performance degrades because of upward-refracting sound speed profiles that limit direct acoustic paths, and strong winds that disrupt sea surface reflectivity and increase ambient noise. Reliability improved up to 36% due to the receive-all gateway mode, and more than doubled for certain node pairs due to a handshake protocol incorporating an automatic repeat request. Shore-based network control demonstrated adaptive sampling by changing ADCP vertical and temporal resolution, and network data path rerouting in response to unplanned events, such as trawling impacts. Networked acoustic modems are well suited for coastal ocean-observing systems, particularly at sites such as this where seafloor cables and surface buoys are vulnerable to fishing and shipping activities.
机译:在2002年冬季和春季,网络声学调制解调器演示了实时无线数据遥测技术,该技术来自位于纽约蒙托克角深20-60 m的内陆架上的一系列底部安装的声学多普勒电流剖面仪(ADCP)。为了满足数据同化数值建模的典型时空采样需求,该阵列跨度为10 km X 10 km,并且每个〜2 h传输一次数据。网络节点包括五个传感器,每个传感器都有一个ADCP和一个安装在防拖网底架中的声学调制解调器。五个中继器,它们是近底部的拉紧缆绳系泊系统上的各个声学调制解调器;和两个网关,每个网关都有一个浮标,带有一个地下声波调制解调器和一个顶部蜂窝调制解调器,允许与海岸进行双向通信。在冬季和春季,与通道浮标相邻的ADCP的交付成功率均超过97%。距离网关5公里的ADCP交付的货物在冬季(春季)的平均可靠性为25%(86%)。由于向上折射的声速剖面限制了直接的声波路径,强风破坏了海面反射率并增加了环境噪声,因此冬季性能下降。由于采用了“全部接收”网关模式,因此可靠性提高了36%,而由于采用了包含自动重复请求的握手协议,因此某些节点对的可靠性提高了两倍以上。基于岸边的网络控制通过更改ADCP垂直和时间分辨率以及响应意外事件(例如拖网影响)重新路由网络数据路径,展示了自适应采样。网络声学调制解调器非常适合于沿海海洋观测系统,尤其是在诸如海底电缆和浮标容易受到钓鱼和航运活动影响的此类地点。

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