Determination of the orientation of the artificial Earth satellite in the case of diffusive scattering of light by its surface

Pub Date : 2022-02-28 DOI:10.15407/knit2022.01.061
V. Epishev, V. Kudak, І. I. ІMotrunich, V. Perig, I. Neubauer, V. Prysiazhnyi
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引用次数: 1

Abstract

The paper considers the basics of the developed method for determining the orientation of low-orbit and geosynchronous spacecraft based on the results of observations of diffuse light scattering by their surfaces. This scattering can be described by phase functions that depend on the shape of the scattering surface, its orientation relative to the directions to the radiation source, and the receiver. Determining the orientation of the irradiated object in the selected coordinate system is one of the cases of solving the inverse problem. The surfaces of the spacecraft are a superposition of several stereometric surfaces that simultaneously scatter light onto the observer, but are differently oriented towards him, which greatly complicates the solution. The application of the developed method was carried out using the data of colorimetric observations of the American meteorological artificial satellite "NOAA-18", which has a cylindrical shape with two flat solar panels.
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人造地球卫星表面散射光情况下卫星方位的确定
本文考虑了根据低轨道和地球同步航天器表面散射光的观测结果确定其方位的方法的基本原理。这种散射可以通过依赖于散射表面的形状、其相对于辐射源和接收器的方向的定向的相位函数来描述。确定被照射物体在所选坐标系中的方向是解决反问题的情况之一。航天器的表面是几个立体表面的叠加,这些表面同时将光散射到观察者身上,但朝向观察者的方向不同,这使解决方案变得非常复杂。所开发方法的应用是利用美国气象人造卫星“NOAA-18”的比色观测数据进行的,该卫星呈圆柱形,有两块扁平的太阳能电池板。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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