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Estimating Target Heights Based on the Earth Curvature Model and Micromultipath Effect in Skywave OTH Radar

机译:基于地球曲率模型的估计目标高度和Skywave radar中的微观素效应

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摘要

Skywave over-the-horizon (OTH) radar systems have important long-range strategic warning values. They exploit skywave propagation reflection of high frequency signals from the ionosphere, which provides the ultra-long-range surveillance capabilities to detect and track maneuvering targets. Current OTH radar systems are capable of localizing targets in range and azimuth but are unable to achieve reliable instantaneous altitude estimation. Most existing height measurement methods of skywave OTH radar systems have taken advantage of the micromultipath effect and been considered in the flat earth model. However, the flat earth model is not proper since large error is inevitable, when the detection range is over one thousand kilometers. In order to avoid the error caused by the flat earth model, in this paper, an earth curvature model is introduced into OTH radar altimetry methods. The simulation results show that application of the earth curvature model can effectively reduce the estimation error.
机译:Skywave超越地平线(OTH)雷达系统具有重要的远程战略警告值。它们利用来自电离层的高频信号的Skywave传播反射,从而提供超远程监控能力来检测和跟踪机动目标。当前的OTH雷达系统能够定位范围和方位角的目标,但无法实现可靠的瞬时高度估计。 SkyWave OTH雷达系统的大多数现有高度测量方法利用了微摩托飞光道效应,并在平坦的地球模型中被考虑。然而,由于误差是不可避免的,平坦的地球模型不适合,当检测范围超过一千公里时。为了避免由平地球模型引起的误差,在本文中,将地球曲率模型引入OTH雷达高度测定方法。仿真结果表明,地球曲率模型的应用可以有效地降低估计误差。

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