电离层非均匀性对高频双基地天波雷达探测区域影响研究

      The influence of ionospheric non-uniformity on the detection area of HF bistatic sky-wave radar

      • 摘要: 高频双/多基地天波雷达具有反隐身性、隐蔽性、高精度等多种优势,但容易受到电离层传输信道的影响。本文针对电离层非均匀特性对高频双基地天波雷达电波传播的影响进行了仿真和试验研究。首先,对高频双基地天波雷达的电波传播模式进行分析;然后,针对电离层非均匀特性及其对天波传播路径的影响,利用IRI模型和射线追踪的方法进行了仿真研究;最后,利用短波收发设备构建的高频双基地天波雷达试验系统,开展了电离层非均匀性对杂波能量影响的试验研究。结果表明,电离层非均匀特性会对天波传播路径的可通性造成显著影响,在高频双基地天波雷达应用场景下,会造成目标可探测区域随频率和方位发生显著变化,从而影响雷达系统对目标的探测性能。本文的研究为高频双基地天波雷达的设计和应用提供了理论和实践依据。

         

        Abstract: High-frequency bistatic/multistatic sky-wave radars have various advantages such as anti-stealth capability, concealment, and high precision. However, they are vulnerable to the influence of the ionospheric transmission channel. This paper conducts simulation and experimental studies on the impact of the ionospheric inhomogeneous characteristics on the radio wave propagation of high-frequency bistatic sky-wave radars. Firstly, the radio wave propagation mode of high-frequency bistatic sky-wave radars is analyzed. In response to the ionospheric inhomogeneous characteristics and their impact on the sky-wave propagation path, simulation studies are carried out using the International Reference Ionosphere (IRI) model and the ray tracing method. An experimental study on the influence of ionospheric inhomogeneity on clutter energy is conducted by using a high-frequency bistatic sky-wave radar experimental system constructed with shortwave transceiver equipment. The results show that the ionospheric inhomogeneous characteristics have a significant impact on the possibility of the sky-wave propagation path. In the application scenarios of high-frequency bistatic sky-wave radars, it will cause significant changes in the detectable area of the target with frequency and azimuth, thus affecting the detection performance of the radar system for the target. The research of this paper provides a theoretical and practical basis for the design and application of high-frequency bistatic sky-wave radars.

         

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