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Simulation-Based Error Analysis of Doppler Velocity Measured by a Spaceborne Cloud-Profiling Radar in the W-band

机译:W波段星云雷达测量多普勒速度的基于仿真的误差分析

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The Communications Research Laboratory is studying spaceborne cloud-profiling radar with Doppler measurement capability. This study uses pulse-pair operation, based on the polarization-diversity technique, to measure Doppler velocity. The error in the measured Doppler velocity was analyzed using simulation technique as a parameter of pulse-pair intervals at several signal to noise ratios. The optimal pulse-pair interval (TS) is investigated in this paper because it is a key parameter in determining the dynamic range of the Doppler velocity and its accuracy. Moreover, it was found that the terminal fall velocity of cloud drops in still air could be measured. Two TS’s (10 μsec and 60 msec) were used as the optimal values. The dynamic range of Doppler velocity for TS = 60 msec is 13.3 m/sec. If this dynamic range for Doppler velocity is enough to avoid the aliasing of Doppler velocity, TS = 60 msec will be suitable for spaceborne cloud-profiling radar because it effectively reduces the error of mean Doppler velocity (). If the accuracy of the beam-alignment of the antenna is not within 0.1 degrees as a general requirement, a wider dynamic range of Doppler velocity is required to avoid the aliasing of Doppler velocity. It was found that TS of 10 msec gives a wide dynamic range of Doppler velocity. It is thus expected that use of TS = 10 μsec is an optional way for spaceborne cloud-profiling radar, though it does not give good accuracy. Selecting TS ranging from 10 to 60 μsec is also a possible way of optimizing the expansion of the dynamic range of Doppler velocity and reducing the error of .
机译:通信研究实验室正在研究具有多普勒测量能力的星载云廓线雷达。这项研究使用基于极化分集技术的脉冲对操作来测量多普勒速度。使用模拟技术作为几种信号对噪声比下脉冲对间隔的参数,对测量的多普勒速度中的误差进行了分析。本文研究了最佳脉冲对间隔(TS),因为它是确定多普勒速度动态范围及其准确性的关键参数。此外,发现可以测量静止空气中的云滴的最终下降速度。两个TS(10微秒和60毫秒)被用作最佳值。 TS = 60毫秒的多普勒速度的动态范围是13.3 m / sec。如果此多普勒速度的动态范围足以避免出现多普勒速度的混叠,则TS = 60毫秒将适用于星载云廓线雷达,因为它有效地降低了平均多普勒速度的误差()。如果一般情况下天线的波束对准精度不在0.1度以内,则需要更宽的多普勒速度动态范围,以避免出现多普勒速度混叠。发现10毫秒的TS给出了多普勒速度的宽动态范围。因此,可以预期的是,TS = 10μsec的使用对于星载云剖析雷达是一种可选方法,尽管它不能提供很好的准确性。选择10到60微秒范围内的TS也是优化多普勒速度动态范围的扩展并减小误差的一种可能方法。

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