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Tracking of Localized Sensor Node using Single-beam Echo Sounder

机译:使用单波束回声测深仪跟踪本地化传感器节点

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In the current scenario, the seabed is extensively mapped using multibeam sonar modules which in return provides the intricate details of the bed. A sensor node on a sea bed can be used to store or to retrieve the data. A low-cost single beam echo sounder provides the best use of localizing a node in underwater environments where full area mapping is not necessary. The multi-beam sonar is not suited for the purpose because of the requirement for high computational power and high cost. A single beam Echo sounder is typically used to determine the depth of the sea, but the paper aims to track a sensor node with the limited 30-degree beamwidth of the single beam echo sounder module. This full-scale area mapping is achieved by a pan-tilt mechanism using the underwater Servo motors. A sensor node can be detected by transmitting an acoustic wave by the Echo sounder which is mounted over a 3D printed housing supported by Servo motors. This paper represents a cost-effective setup to scan the full area and localize a sensor node in an unknown underwater environment. The setup has been tested for two cases underwater and the results assure the correct localization.
机译:在目前的场景中,海底广泛使用MultiBeam Sonar模块映射,这是回报提供了床的复杂细节。海床上的传感器节点可用于存储或检索数据。低成本单波束回声声测度器提供了在不需要完整区域映射的水下环境中本地化节点的最佳使用。多光束声纳由于高计算能力和高成本而要求,多光束声纳不适合该目的。单个光束回波声测度器通常用于确定海的深度,但是纸张旨在跟踪具有单波束回波探测器模块的有限30度波束宽的传感器节点。这种全尺度区域映射是通过使用水下伺服电机的泛倾斜机构实现的。可以通过将声波通过安装在由伺服电动机支撑的3D印刷壳体上的回波探测器发送声波来检测传感器节点。本文代表了一个经济高效的设置,以扫描完整区域并在未知的水下环境中本地化传感器节点。在水下两种情况下测试了设置,结果确保了正确的本地化。

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