Global near-earth space coverage by zones of the use of its observation devices: concept and algorithms

Labutkina Tetyana, Ananko Ruslan
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Abstract

The results of the study are presented within the framework of the task of ensuring full coverage of a given area of heights above the Earth's surface (the area of space between two spheres with a common center at the center of the Earth) by instantaneous zones of possible application of orbital-based surveillance devices located on spacecraft in orbital groups of different heights in circular orbits. In the general case, the solution of the problem involves the use of several orbital groupings of different heights on circular quasi-polar orbits, which in the simplified statement of the problem are assumed to be polar. The instantaneous zone of possible application of the surveillance device is simplified in the form of a cone. The cases of using observation devices "up" (above the plane of the instantaneous local horizon of the spacecraft, which is the carrier of the observation device) and observations "down" (below this plane) are considered. The concept of solving the problem is proposed, which is based on the selection (based on the development of methods of applying known algorithms) of such a structure of each orbital grouping, which will ensure continuous coverage of a part of the given observation space (area of guaranteed observation), the boundaries of which are moved away from the location of observation devices, and then - filling the space with these areas. The work is devoted to the space theme, but by generalizing the statement of the prob-lem, varying a number of conditions of this statement and changing the "scale" of the input data, it is possible to arrive at a variety of technical problems where the proposed concept and algorithms used in its implementation will be appropriate and acceptable (in part or in full). In particular, when some surveillance systems or systems of complex application of technical operations devices are created.
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全球近地空间观测设备使用区域覆盖:概念和算法
研究结果是在任务框架内提出的,该任务是通过在圆形轨道上不同高度的轨道群中安装的航天器上的轨道监视设备的可能应用的瞬时区域,确保在地球表面以上给定高度的区域(在地球中心有共同中心的两个球体之间的空间区域)完全覆盖。一般情况下,问题的解决涉及在圆形准极轨道上使用几个不同高度的轨道群,在问题的简化表述中,这些轨道群被假定为极轨道。将监控装置可能应用的瞬时区域简化为圆锥体形式。考虑了“上”观测装置(在航天器的瞬时局部水平平面之上,航天器是观测装置的载体)和“下”观测装置(在该平面以下)的情况。提出了求解该问题的概念,即选择(基于应用已知算法的方法的发展)每个轨道分组的这种结构,确保连续覆盖给定观测空间(保证观测区域)的一部分,并将其边界移离观测设备的位置,然后用这些区域填充该空间。这项工作致力于空间主题,但通过概括问题的陈述,改变这种陈述的一些条件并改变输入数据的“规模”,有可能达到各种技术问题,其中在其实施中使用的拟议概念和算法将是适当的和可接受的(部分或全部)。特别是当建立了一些监视系统或复杂应用技术操作装置的系统时。
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