首页> 外文会议>Proceedings of the 28th international conference on ocean, offshore and arctic engineering 2009 >Real-Time Current and Wave Monitoring Using Acoustic and Iridium Satellite Links
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Real-Time Current and Wave Monitoring Using Acoustic and Iridium Satellite Links

机译:使用声和铱卫星链路进行实时电流和波监测

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The U.S. National Ocean Service (NOS) of NOAA maintains and operates a Physical Oceanography Real Time System (PORTS?) in the Nation's major ports, harbors and bays. The traditional method of obtaining real-time data from bottom mounted instruments is via underwater cable link. However, this is vulnerable to damage and costly to install and maintain.rnThis paper describes an approach utilizing acoustic and Iridium satellite links to report in real-time wave and current data. The system consists of an ocean bottom instrumentation platform and a U.S. Coast Guard Aid-to-Navigation buoy for data relay. The bottom platform contains a Nortek 1 MHz Acoustic Wave and Current profiler (AWAC) with an integrated Nortek Internal Processor (NIP), a LinkQuest omnidirectional UWM2000H underwater acoustic transmitting modem, an ORE acoustic release-based recovery component, and a Teledyne-Benthos UAT-376/EL acoustic transponder. The surface buoy supports an omni-directional UWM2000H receiving modem, an Iridium antenna, and an electronic box containing an Iridium modem, a controller, battery packs, and temperature and voltage sensors. The AWAC measures current profiles along the vertical water column at 30-minute intervals and surface waves at hourly intervals. The NIP processes a set of user selected wave and current parameters and sends these data to the controller on the surface buoy through acoustic modems. The data are then transmitted via Iridium satellite to remote offices in real-time. Sample measurement results and reference data from a near-by Datawell's Waverider directional wave buoy are presented. The Waverider is operated by the U.S. Army Corps of Engineers (USACE) and Scripps Institution of Oceanography (SIO). Several unique system design features and interesting wave phenomenon observed at the measurement site are discussed. The goal of this project is to demonstrate the performance of AWAC, NIP, shallow water acoustic modems, and Iridium satellite in real-time data telemetry.
机译:NOAA的美国国家海洋局(NOS)在国家的主要港口,港口和海湾地区维护和运营物理海洋学实时系统(PORTS?)。从底部安装的仪器获取实时数据的传统方法是通过水下电缆链接。但是,这种方法容易损坏,并且安装和维护成本很高。本文描述了一种利用声学和铱星卫星链路实时报告波和当前数据的方法。该系统由一个海底仪器平台和一个用于数据中继的美国海岸警卫队辅助导航浮标组成。底部平台包含带有集成Nortek内部处理器(NIP)的Nortek 1 MHz声波和电流剖面仪(AWAC),LinkQuest全向UWM2000H水下声发射调制解调器,基于ORE声波释放的恢复组件以及Teledyne-Benthos UAT -376 / EL声音应答器。表面浮标支持全向UWM2000H接收调制解调器,铱星天线以及包含铱星调制解调器,控制器,电池组以及温度和电压传感器的电子盒。 AWAC以30分钟为间隔测量沿垂直水柱的电流分布,以小时为间隔测量表面波。 NIP处理一组用户选择的波浪和电流参数,并将这些数据通过声学调制解调器发送到浮标上的控制器。然后,数据通过铱星实时传输到远程办公室。展示了附近Datawell Waverider定向波浪浮标的样品测量结果和参考数据。 Waverider由美国陆军工程兵团(USACE)和斯克里普斯海洋学研究所(SIO)运营。讨论了几种独特的系统设计功能以及在测量现场观察到的有趣的波动现象。该项目的目的是演示AWAC,NIP,浅水声调制解调器和铱星卫星在实时数据遥测中的性能。

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