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首页> 外文期刊>Procedia Computer Science >Implementation of a wireless system architecture of conductivity temperature and pressure sensors for support the identification of the salt wedge and its impact on safety Maritime in estuary of the Magdalena River - A case study
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Implementation of a wireless system architecture of conductivity temperature and pressure sensors for support the identification of the salt wedge and its impact on safety Maritime in estuary of the Magdalena River - A case study

机译:电导率温度和压力传感器的无线系统架构的实现,用于支持盐楔的识别及其对麦格达纳河河口的安全海事的影响 - 以案例研究

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This article aims to show the components of a wireless sensor system to measure temperature, conductivity and pressure at the mouth of the Magdalena River - Colombia. This analysis was carried out jointly with the General Maritime Directorate of Colombia. The measurements will be carried out underwater, with the buoys currently available in the navigable channel, which will work with solar energy and the data will be sent via Bluetooth, Wifi or Ethernet. With the data received by the sensor network, different analyzes will be carried out through the implementation of different data mining techniques, which will support the decision making of government entities. Through the implementation of this architecture, different behaviors found in the estuary will be identified and there will be real-time information that favors maritime safety in the navigable channel.
机译:本文旨在展示无线传感器系统的组件,以测量Magdalena河 - 哥伦比亚的嘴巴的温度,电导率和压力。该分析与哥伦比亚总局联合开展。测量将在水下进行,该浮标目前可通道的浮标,它将与太阳能一起使用,数据将通过蓝牙,WiFi或以太网发送。利用传感器网络接收的数据,将通过实施不同的数据挖掘技术来进行不同的分析,这将支持政府实体的决策。通过执行此架构,将识别出河口中发现的不同行为,并且将有实时信息,这些信息有利于导航频道中的海事安全。

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