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Comparison of Geosynchronous Satellites Spectral Signatures During Glint Season

机译:闪烁季节地球同步卫星光谱特征的比较

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Cadets in the Department of Physics at the United States Air Force Academy are using the technique of slitless spectroscopy to analyze the spectra from geostationary satellites during glint season. The equinox periods of the year are particularly favorable for earth-based observers to detect specular reflections off satellites (glints), which have been observed in the past using broadband photometry techniques. Three seasons of glints were observed and analyzed for multiple satellites, as measured across the visible spectrum using a diffraction grating on the Academy's 16-inch, f/8.2 telescope. It is clear from the results that the glint maximum wavelength decreases relative to the time periods before and after the glint, and that the spectral reflectance during the glint is less like a blackbody. The glint spectra are also quantitatively compared to different blackbody curves and the solar spectrum by means of absolute differences. Our initial analysis appears to indicate a potential method of determining relative power capacity. These results are consistent with the presumption that solar panels are the predominant source of specular reflection.
机译:美国空军学院物理系的学员正在使用无缝光谱技术来分析闪光季节的地球静止卫星的光谱。今年的昼夜计划期间特别有利于基于地球的观察者检测卫星反射的卫星(闪光),使用宽带光度测量技术已经在过去观察到。观察到三个闪光季节并分析多个卫星,如在学院的16英寸F / 8.2望远镜上的衍射光栅上的可见光谱上测量。从结果清楚地看出,闪烁的最大波长相对于闪光前后的时间段减小,并且闪光期间的光谱反射率不太像黑体。通过绝对差异,还与不同的黑体曲线和太阳光谱相比,闪光光谱也是数量的。我们的初始分析似乎表示确定相对电力容量的潜在方法。这些结果与假设太阳能电池板是镜面反射的主要来源一致。

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