Features of the development of space-based shading and lighting systems for the Earth’s surface

A. Alpatov, E. Lapkhanov
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Abstract

The problem of ensuring favorable climatic conditions in a particular territory is global for mankind. In the context of the global climate change, its resolution may be crucial for national economy management in many countries. By now, a number of engineering solutions have been proposed to develop means that may allow one to achieve the goal of global climate control. These solutions include an Earth orbit change concept, aerosol marine and stratospheric technologies, and a “sunshade” concept. One of the promising conceptual developments is a space-based “sunshade” technology. Taking into account the significant scientific background and a similar principle of operation of lighting (illuminative) systems, they were suggested to be used simultaneously with “sunshade” systems. The goal of this work is the development of a structure for a mathematical model of the ballistics and navigation of a space-based shading and lighting system (SBSLS). To do this, SBSLS structural modules were identified: a space-based industrial platform for SBSLS module production, passive and active shading and lighting modules, and service spacecraft. Generalized construction arrangements of the shading and lighting module were decided on. Based on the features of the SBSLS structural modules, a structure for a mathematical model of SBSLS ballistic and navigational support was developed. The structure comprises five components: an orbit estimator, an attitude motion estimator, an attitude and orbit control system, an optical estimator, and a geodetic estimator. A number of specific problems involving the choice of SBSLS design parameters at the conceptual design stage were identified and justified for further investigation. The combined use of the above modules may allow one to solve them.
天基地球表面遮阳和照明系统的发展特点
对人类来说,确保某一特定地区的有利气候条件是一个全球性的问题。在全球气候变化的背景下,解决这一问题可能对许多国家的国民经济管理至关重要。到目前为止,已经提出了许多工程解决方案来开发可能允许人们实现全球气候控制目标的手段。这些解决方案包括地球轨道变化概念、气溶胶海洋和平流层技术以及“遮阳”概念。其中一个有前途的概念发展是基于太空的“遮阳”技术。考虑到重要的科学背景和照明(照明)系统的类似操作原理,它们被建议与“遮阳”系统同时使用。这项工作的目标是为基于空间的遮阳和照明系统(SBSLS)的弹道和导航的数学模型的结构的发展。为此,确定了SBSLS结构模块:用于SBSLS模块生产的天基工业平台、被动和主动遮阳和照明模块以及服务航天器。确定了遮阳和照明模块的总体结构安排。根据弹道导弹导弹结构模块的特点,建立了弹道导弹和导航保障数学模型的结构。该结构由五部分组成:轨道估计器、姿态运动估计器、姿态轨道控制系统、光学估计器和大地测量估计器。在概念设计阶段确定了一些涉及SBSLS设计参数选择的具体问题,并为进一步调查提供了理由。综合使用上述模块可以解决这些问题。
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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