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Insulated Wire Fed Floating Monopole Antenna for Coastal Monitoring

机译:绝缘金属丝浮动单极天线,用于海岸监测

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A thin, flexible, insulated wire submerged in seawater forms a coaxial cable which has attenuation at ultra-high frequency (UHF) dependent on the operating frequency, the diameter of the insulating material and the diameter of the inner conductor. An extension of the insulated wire above the surface through a spherical float forms a monopole antenna. Attenuation through the wire depends on the conductivity and temperature of seawater. This paper reports the effect of electromagnetic (EM) wave propagation at 433 MHz through insulated wires with different radii of the insulating material and inner conductor. The attenuation was calculated and measured in the range of 32-47 dB/m. The propagation from the monopole antenna to a fixed shore based receiver was measured to be approximately equal to 1 dB/m. The propagation measurements were compared with a shielded coaxial cable. Results show that the propagation range depends on the ratio of the insulation radius to conductor radius for insulated wire, however, a shielded coaxial cable showed no significant attenuation. The technique has applications in coastal wireless sensor networks where the water depth changes continually due to tide and wave motion.
机译:浸入海水中的细而柔软的绝缘电线形成同轴电缆,该同轴电缆在超高频(UHF)处具有衰减,这取决于工作频率,绝缘材料的直径和内部导体的直径。绝缘线通过球形浮子在表面上方的延伸形成单极天线。通过导线的衰减取决于海水的电导率和温度。本文报告了通过绝缘材料和内部导体半径不同的绝缘线在433 MHz处传播电磁波的影响。计算得出的衰减在32-47 dB / m的范围内。从单极天线到固定岸基接收机的传播被测量为大约等于1 dB / m。将传播测量结果与屏蔽同轴电缆进行了比较。结果表明,传播范围取决于绝缘线的绝缘半径与导体半径之比,但是,屏蔽同轴电缆没有明显衰减。该技术已在沿海无线传感器网络中应用,该网络中的水深由于潮汐和波浪运动而不断变化。

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