Preselection of the reference orbit for an Earth remote sensing satellite

A. Alpatov, A. Maslova, A. Pirozhenko
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Abstract

Low near-circular orbits of Earth remote sensing (ERS) satellites are considered. The objective is to select the orbits most suitable for a particular satellite mission. In particular, the problem of an approximate determination of the orbit parameters that allow a satisfactory satellite survey of the target surface of the Earth is considered. The main desires of observation system developers regarding the conditions of the Earth's surface survey are considered. To reconcile these desires with the regularities of satellite motion in low Earth orbits, use may be made of simple models that describe these regularities. In doing so, it is desirable to visualize viewing swaths on the Earth's surface. A compromise between the desires of observation system developers and the satellite motion regularities is the selection of orbits that best meet the characteristics of a particular satellite and its observation system. This article presents a simple model and algorithm that make it possible to preselect ERS satellite orbits. The proposed model is based on familiar relationships, and the novelty of the article lies in a compact and generalized presentation of the model for ERS satellite orbit preselection. The article presents models that make it possible to estimate the satellite swath width and choose the orbit inclination angle, a stable orbit shape, the orbit altitude, and the orbital period. The advantages and disadvantages of solar synchronous orbits are considered. Analytical expressions are constructed to fairly simply estimate the excursion of a satellite from its operational orbit under the action of the aerodynamic drag, estimate the rate of recovery of the orbit parameters under the action of a constant transversal control acceleration, and determine allowable time intervals between engine starts and engine operation intervals. The advantages of repeat ground track orbits are shown. The simplest model for calculating and visualizing satellite viewing swathes of the Earth's surface is constructed. Thus, the article proposes a simple algorithm for the preselection of low Earth orbits for ERS satellites with a satisfactory observation of the target surface of the Earth.
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地球遥感卫星参考轨道的预选
考虑了低近圆轨道的地球遥感卫星。目标是选择最适合某一特定卫星任务的轨道。特别考虑了轨道参数的近似确定问题,以使卫星对地球目标表面进行满意的测量。考虑了观测系统开发人员对地球表面测量条件的主要愿望。为了使这些愿望与低地球轨道卫星运动的规律相协调,可以使用描述这些规律的简单模型。在这样做的过程中,人们希望看到地球表面上的带状景象。观测系统开发人员的愿望与卫星运动规律之间的妥协是选择最符合特定卫星及其观测系统特性的轨道。本文提出了一个简单的模型和算法,使ERS卫星轨道的预选成为可能。该模型基于熟悉的关系,其新颖之处在于对ERS卫星轨道预选模型进行了简洁和广义的描述。本文提出了估算卫星带宽度、选择轨道倾角、稳定轨道形状、轨道高度和轨道周期的模型。分析了太阳同步轨道的优缺点。构造了解析表达式,以相当简单地估计在气动阻力作用下卫星偏离其运行轨道的偏移,估计在恒定的横向控制加速度作用下轨道参数的恢复速率,并确定发动机启动和发动机运行间隔的允许时间间隔。说明了重复地面轨道轨道的优点。建立了计算和可视化地球表面卫星观测条带的最简单模型。因此,本文提出了一种简单的ERS卫星近地轨道预选算法,并对地球目标表面进行了满意的观测。
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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