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首页> 外文期刊>Geoscience and Remote Sensing, IEEE Transactions on >Performance Analysis of Optimum Tilt Angle and Beam Configuration to Derive Horizontal Wind Velocities by Postset Beam Steering Technique
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Performance Analysis of Optimum Tilt Angle and Beam Configuration to Derive Horizontal Wind Velocities by Postset Beam Steering Technique

机译:后置射束转向技术对最优水平风速的最佳倾角和波束配置性能分析

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摘要

Software beam synthesis by postset beam steering (PBS) technique is used to derive the horizontal wind velocities from multireceiver phased-array radar data. In order to improve the efficiency of beam synthesis, the Capon beamforming method is used to synthesize time series signals in the desired line-of-sight angle within the radar transmit beam volume (3.6$^{circ}$ beamwidth). This paper describes beam synthesizing in optimum directions to reduce the error in the measurement of horizontal wind velocities using the PBS technique. For this purpose, beams are synthesized at various tilt angles with multibeam configuration. From the synthesized beam, power spectral distribution is obtained by one of the subspace methods, i.e., eigenvector (EV). The mean Doppler frequency and radial wind velocity at the desired line-of-sight angle are derived by an adaptive-moment estimation method from an EV-produced power spectrum. Using the moments obtained in various radial directions, horizontal wind components are derived by the conventional method for wind profiler radars. Also, an analysis is done for the required number of beams to improve PBS-based wind estimation. The statistical comparisons of performances of various tilt angles and beam configurations are being studied using the data collected from a multireceiver phased-array radar system (middle and upper atmosphere radar, Shigaraki, Japan). The analyzed results show that beam synthesis at the tilt angle from 1.5$^{ circ}$ to 2.0$^{circ}$ using a 16-beam configuration minimize the error in horizontal wind estimation by PBS technique.
机译:利用后置波束控制(PBS)技术进行软件波束合成,可以从多接收机相控阵雷达数据中得出水平风速。为了提高波束合成的效率,Capon波束成形方法用于在雷达发射波束体积(3.6 circ波束宽度)内以所需的视线角合成时间序列信号。本文介绍了在最佳方向上进行波束合成以减少使用PBS技术测量水平风速时的误差。为此,以多光束配置以各种倾斜角度合成光束。通过子空间方法之一,即特征向量(EV),从合成束获得功率谱分布。通过自适应矩估计方法,从电动汽车产生的功率谱中得出所需视线角处的平均多普勒频率和径向风速。利用在各种径向方向上获得的力矩,通过风廓线雷达的常规方法得出水平风分量。同样,对所需束数进行了分析,以改善基于PBS的风估算。正在使用从多接收器相控阵雷达系统(中日高空雷达,日本滋贺木,日本)收集的数据研究各种倾斜角度和波束配置的统计比较。分析结果表明,使用16光束配置在从1.5°到2.0°的倾斜角上进行光束合成可以使PBS技术估计水平风的误差最小。

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