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Capturing Atmospheric Effects on 3D Millimeter Wave Radar Propagation Patterns

机译:捕获3D毫米波雷达传播模式的大气效果

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Traditional radar propagation modeling is done using a path transmittance with little to no input for weather and atmospheric conditions. As radar advances into the millimeter wave (MMW) regime, atmospheric effects such as attenuation and refraction become more pronounced than at traditional radar wavelengths. The DoD High Energy Laser Joint Technology Offices High Energy Laser End-to-End Operational Simulation (HELEEOS) in combination with the Laser Environmental Effects Definition and Reference (LEEDR) code have shown great promise simulating atmospheric effects on laser propagation. Indeed, the LEEDR radiative transfer code has been validated in the UV through RF. Our research attempts to apply these models to characterize the far field radar pattern in three dimensions as a signal propagates from an antenna towards a point in space. Furthermore, we do so using realistic three dimensional atmospheric profiles. The results from these simulations are compared to those from traditional radar propagation software packages. In summary, a fast running method has been investigated which can be incorporated into computational models to enhance understanding and prediction of MMW propagation through various atmospheric and weather conditions.
机译:传统的雷达传播建模是使用路径透射率完成的,几乎没有任何用于天气和大气条件的输入。随着雷达进入毫米波(MMW)的状态,大气效应如衰减和折射变得比传统的雷达波长变得更加明显。国防部高能激光联合技术办公室高能量激光端到端操作模拟(HELEEOS)与激光环境效应定义和参考(LEEDR)代码相结合,已经显示了对激光传播的大气效应的良好承诺。实际上,LEEDR辐射转移代码已经通过RF验证了UV。我们的研究试图应用这些模型,以在三维中表征远场雷达图案,因为信号从天线传播到空间中的点。此外,我们使用现实的三维大气配置文件来实现。这些模拟的结果与传统雷达传播软件包中的结果进行了比较。总之,已经研究了快速运行方法,其可以纳入计算模型中,以通过各种大气和天气条件增强MMW传播的理解和预测。

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