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Echo simulation of dual polarization Doppler weather radar based on the physical model

机译:基于物理模型的双偏振多普勒天气雷达回声仿真

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Using the scattering characteristics of particles to simulate the radar echo can supply the test signals close to the real precipitation echo for the weather radar and save the time and cost of the research and development and maintenance of the weather radar. In this paper, the precipitation echo of weather radar is simulated based on the theoretical basis that the falling raindrops have a shape well approximated by an oblate spheroid in the atmosphere. The Marshal-Palmer distribution is applied to describe the raindrop spectrum distribution of precipitation particles. It is assumed that the raindrop particles of different sizes have the random distribution in the radar resolution volume, and then the spatial distribution of precipitation particles in the resolution volume is modeled. The echo signals of horizontal and vertical polarization channels of dual-polarization weather radar are obtained by vector superposition of backscattering echoes of each particle. The experimental results show that this method can describe the microphysical characteristics of precipitation particles more completely and can be used to test the signal processing module of dual-polarization Doppler weather radar.
机译:使用粒子的散射特性模拟雷达回波可以向天气雷达提供靠近真正降水回声的测试信号,并节省了天气雷达的研发和维护的时间和成本。在本文中,基于落雨层的倾斜雨滴在大气中的扁圆形球体具有良好近似的形状,模拟天气雷达的降水回声。 Marshal-Palmer分布应用于描述沉淀颗粒的雨滴光谱分布。假设不同尺寸的雨滴颗粒具有雷达分辨率体积的随机分布,然后模拟分辨率体积中的沉淀颗粒的空间分布。通过向量叠加的每种颗粒的反向散射回波的矢量叠加来获得双极化气象雷达的水平和垂直极化通道的回波信号。实验结果表明,该方法可以更完整地描述沉淀颗粒的微神科特征,可用于测试双极化多普勒天气雷达的信号处理模块。

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