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Analysis of loop antenna with ground plane for underwater communications

机译:水下通信用地平面环形天线的分析

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Transmission and reception of high-speed short range signal is important for successful underwater water communications between an Autonomous Underwater Vehicle (AUV) or Remote Operated Vehicles (ROVs) and a docking station or underwater sensor nodes during a survey mission. The need for this form of application is currently receiving global attention from scientific groups and industries. Hence, underwater antennas are therefore required to provide these links and achieve good data rates and propagation distances for these applications either in fresh or sea water scenario. In this paper, the performance of loop antenna placed at a specified distance and parallel to the ground plane is assessed through simulation for usage in fresh water and operating in the High Frequency (HF) band. Three variations of this antenna namely; the circular loop, the square loop and the delta loop antennas has been placed on two different ground plane shapes (circular and square) for analyses of their performances. These antennas were designed in FEKO, an electromagnetic simulation software and their performance is assessed in terms of bandwidth and directivity. The results obtained shows that the antennas exhibit wideband and high directivity with square loop antenna placed on a square ground plane having slight advantages over the other antennas with respect to their bandwidth and directivity. Experimental results added for the same antenna, confirmed its performance in terms of the measured parameters are in good agreement with simulation results.
机译:高速短程信号的发送和接收对于在勘测任务期间自动水下航行器(AUV)或远程驾驶飞行器(ROV)与扩展坞或水下传感器节点之间成功进行水下水通信至关重要。目前,这种形式的应用需求正在引起科学团体和行业的全球关注。因此,因此需要水下天线来提供这些链路,并在淡水或海水情况下为这些应用实现良好的数据速率和传播距离。在本文中,通过模拟评估淡水中使用并在高频(HF)频段中工作的环形天线的性能,该环形天线放置在指定距离并平行于接地平面。该天线的三个变体即;圆形,方形和三角形天线已放置在两个不同的接地平面形状(圆形和正方形)上,以分析其性能。这些天线是在电磁仿真软件FEKO中设计的,并根据带宽和方向性评估了它们的性能。所获得的结果表明,将天线放置在正方形接地平面上的方环形天线具有宽带和高方向性,就带宽和方向性而言,它们比其他天线略有优势。对于同一根天线增加的实验结果,证实了其在测量参数方面的性能与仿真结果非常吻合。

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