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Improving the Atmospheric Wind Speed Measured Accuracy by the Ground-Based Airglow Imaging Interferometer

机译:地基气辉成象干涉仪提高大气风速测量精度

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A prototype ground based airglow imaging interferometer (GBAII) has been constructed to observe the upper atmospheric wind velocity and temperature at an altitude of 90-100 km, but the GBAll's wind speed accuracy was found to be unsatisfactory with a value of 21.0 m/s. Three theoretical aspects have been investigated to improve the accuracy, with the following finding: 1) By replacing the surface coatings of the GBAII's 6 lenses and Michelson interferometer (MI) with a new wind-speed infrared film rather than the original visible light film, the accuracy can be increased by 3.0 m/s. 2) By replacing the original charge-coupled device (CCD) with a quantum efficiency (QE) of 0.38 at the wavelength of approximately 866 nm by an electron multiplying CCD (EMCCD) with QE of 0.95, the accuracy can be increased by 6.7 m/s. By adding all the factors that improve the accuracy of the GBAII, it can be improved by 15.0 m/s, which realizes the original aim of wind speed accuracy of 6.0 m/s. Experimental results have been obtained for two aspects: 1) By replacing the surface film on the GBAII's 6 lenses and MI interface, the wind speed accuracy has been increased by 3.8 m/s. 2) A new GBAII temperature controller has been constructed to control the environmental temperature in 0.2 K steps. The results obtained by the GBAII on Dec. 6, 2013 show an average atmospheric temperature of 206.5 K, zonal wind speed of -26.8 m/s and meridional wind speed of 28.1 m/s. These results are close to those of the TIMED (Thermosphere Ionosphere Mesosphere Energetics and Dynamics) satellite Doppler interferometer (TIDI) data collected at almost the same time.
机译:构造了基于地面的气辉成像干涉仪(GBAII)原型,以观察90-100 km高度的大气大气速度和温度,但发现GBAll的风速精度不令人满意,其值为21.0 m / s 。研究了三个理论方面,以提高精度,结果发现:1)用新的风速红外膜代替了原始的可见光膜来代替GBAII的6透镜和迈克尔逊干涉仪(MI)的表面涂层,精度可以提高3.0 m / s。 2)通过用QE为0.95的电子倍增CCD(EMCCD)替换波长约为866 nm处的量子效率(QE)为0.38的原始电荷耦合器件(CCD),可以将精度提高6.7 m / s。通过添加提高GBAII精度的所有因素,可以将其提高15.0 m / s,从而实现6.0 m / s的风速精度的原始目标。从两个方面获得了实验结果:1)通过替换GBAII的6个透镜和MI接口上的表面膜,风速精度提高了3.8 m / s。 2)已经构造了新的GBAII温度控制器,以0.2 K的步长控制环境温度。 GBAII在2013年12月6日获得的结果显示,平均大气温度为206.5 K,纬向风速为-26.8 m / s,子午风速为28.1 m / s。这些结果接近于几乎同时采集的TIMED(热层电离层中层能和动力学)卫星多普勒干涉仪(TIDI)数据。

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