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Statistical analysis of multiple scattering and attenuation due to many raindrops using FDTD

机译:使用FDTD对由于许多雨滴引起的多次散射和衰减的统计分析

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Rain measurement system using propagation characteristics of microwave and millimeter wave is very effective for disaster prevention system for local strong rainfalls. Measurement technique of electromagnetic scattering and attenuation characteristics by rain is one of useful evaluation methods of rainfall rate[1,2]. Attenuations of incident wave with 20GHz carrier frequency in random media corresponding to rainfall rate 5–50 mm/h are evaluated by three-dimensional FDTD method. In FDTD analysis, incident wave with relatively flat distribution around beam center is transmitted. Firstly, we show measurement system of rain attenuation using microwave Gaussian beam[3]. When the frequency of incident wave is 20GHz, scattering by a raindrop with 1mm diameter can be shown by Rayleigh approximation scattering theory. Next, scattered fields by single and two raindrops are evaluated by FDTD method and Rayleigh scattering theory. Lastly, scattered fields by many raindrops and specific rain attenuation are evaluated using FDTD method[4–6]. Based on these computer simulations, the optimum measurement system of rain using microwave techniques may be accomplished.
机译:利用微波和毫米波传播特性的雨量测量系统对于局部强降雨的防灾系统非常有效。雨水电磁散射和衰减特性的测量技术是一种有用的降雨率评估方法[1,2]。通过三维FDTD方法评估了随机介质中入射频率为20GHz的入射波在降雨速率为5-50 mm / h时的衰减。在FDTD分析中,传输的光束围绕光束中心分布相对平坦。首先,我们展示了使用微波高斯光束的降雨衰减测量系统[3]。当入射波的频率为20GHz时,可以通过瑞利近似散射理论显示直径为1mm的雨滴的散射。接下来,通过FDTD方法和瑞利散射理论评估单个雨滴和两个雨滴的散射场。最后,使用FDTD方法评估了许多雨滴造成的散布场和特定的雨衰[4-6]。基于这些计算机模拟,可以实现使用微波技术的雨水最佳测量系统。

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