Development of three-dimensional underwater localization method using electromagnetic wave e-plane attenuation pattern

Kyungmin Kwak, Daegil Park, W. Chung, Jinhyun Kim
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Abstract

There is a fact that EM waves could not be used in the underwater environment because the signal is highly attenuated by the water medium according to the distance. However, the reducing tendency is very clear and uniform. Thus, EM waves may be applied as underwater distance sensors. In this paper, on the basis of theory verification and several experiments carried out, calibration methods are developed in case of linear and planar environment. For three-dimensional localization in the underwater environment, it must consider antenna's radiation properties in an electric field plane which is called E-plane. It is shown that the proposed experimental methods might verify attenuation tendency with z axis movement, PLF (Polarization Loss Factor) and ILF (Inclination Loss Factor) with its theoretical approach.
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基于电磁波e面衰减图的水下三维定位方法的发展
有一个事实是,电磁波不能在水下环境中使用,因为信号被水介质根据距离高度衰减。但是,还原趋势是非常明显和均匀的。因此,电磁波可以用作水下距离传感器。本文在理论验证和多次实验的基础上,提出了线性和平面环境下的标定方法。为了在水下环境中进行三维定位,必须考虑天线在电场平面(e平面)中的辐射特性。实验结果表明,所提出的实验方法可以用理论方法验证z轴运动、偏振损耗因子(PLF)和倾角损耗因子(ILF)的衰减趋势。
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