多普勒天气雷达系统的分析和计算机模型

R. Hersey, M. A. Richards, J. H. McClellan
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引用次数: 2

摘要

随着多普勒天气雷达的进步,强风暴和龙卷风的探测有了很大的提高。然而,部署雷达系统的分辨率限制仍然会限制强风暴的探测。在较大的龙卷风的情况下,通常可以在相邻的距离角箱之间检测到风向的特征突变。然而,对于较小的龙卷风,旋转单元可能包含在一个箱中。在这种情况下,风向的变化无法被检测到,龙卷风可能无法被检测到。本研究的目的是建立典型多普勒天气雷达测量的分析和计算机模拟模型。这些模型可用于确定各种因素如何影响反射率、速度和频谱宽度测量,这些测量通常用于风暴探测算法。这些模型考虑了由于雷达天线方向图引起的方位角卷积、由于雷达脉冲形状引起的距离卷积、天气事件和测量的随机性、雷达脉冲之间测量的变化以及测量中附加的噪声。同时使用分析模型和模拟模型可以生成模拟数据,以及预测数据行为的方程。因此,分析模型和仿真模型可以用来检验对方的准确性。此外,分析模型可以用于创建未来的算法(例如分辨率增强),模拟数据可以用作这些算法的测试。
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Analytical and computer model of a Doppler weather radar system
With advances in Doppler weather radar, severe storm and tornado detection has improved greatly. However, the resolution limitations of deployed radar systems can still limit severe storm detection. In the case of larger tornadoes, characteristic abrupt changes in wind direction can usually be detected between adjacent range-angle bins. However for smaller tornadoes, the rotating cell may be contained within one bin. In this case, a wind directional change cannot be detected, and the tornado may go undetected. The purpose of this research is to develop analytical and computer simulation models of typical Doppler weather radar measurements. These models can be used to determine how various factors affect the reflectivity, velocity, and spectrum width measurements that are commonly used in storm detection algorithms. The models account for convolution in azimuth due to the radar antenna pattern, convolution in range due to the radar pulse shape, randomness of the weather events and measurements, variations in the measurements between radar pulses, and the addition of noise to the measurements. Using both analytical and simulation models allows for simulated data to be generated, as well as equations that predict the behavior of the data. Therefore, the analytical and simulation models can be used to test the other's accuracy. Additionally, the analytical model can be used to create future algorithms (e.g. resolution enhancement), and the simulated data can be used as a test for these algorithms.
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