载人航天物体机组人员生命维持,控制问题

Boris F. Zaretskiy, A. Guzenberg, Igor A. Shangin
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引用次数: 0

摘要

第一次载人航天飞行的生命支持是基于消耗品的供应。基于水和氧气供应的机组人员生命维持系统尽管简单,但在轨道空间任务中效率极低,在深空任务中也不可行,因为质量和体积的限制。因此,目前已经开发并将用于空间站的生命维持系统是基于从人类废物中提取的水和氧的化学和物理再生。鉴于长寿命轨道空间站的进一步发展,以及建立行星前哨站和深空探测的前景,构建一套可再生LSS的自动化控制系统问题变得紧迫。在这种情况下,由于存在大量的有效性标准,解决构建有效控制系统问题的复杂性。本文提出了一个统一的全局效率准则体系,该体系将该问题分解为一系列优化子问题来解决该问题。建议的标准是寿命、成本和舒适度。本文给出了一系列使用所提出的原则的具体例子,并进行了必要的概括。关键词:空间生命维持系统,大气再生设备,自动化控制系统,全球通用效率标准,寿命,成本,舒适性
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Жизнеобеспечение экипажа пилотируемого космического объекта, проблемы управления
Life support for first manned spaceflights was based on supplies of consumables. Crew life support systems based on supplies of water and oxygen, in spite of their simplicity, are extremely inefficient in orbital space missions and are unfeasible in deep space missions because of mass and volume constraints. Therefore, there are currently developed and are to be used on space stations the life support systems that are based on chemical and physical regeneration of water and oxygen extracted from human waste. In view of further advances in long-duration orbital stations, and the prospects of establishment of planetary outposts and deep space exploration, the problem of constructing an automated system for controlling a suite of regenerative LSS becomes urgent. The complexity of solving the problem of constructing an efficient control system in this case owes to the existence of a large number of effectiveness criteria. The paper proposes a system of consolidated global efficiency criteria, which allows to break up this problem into a series of sub-problems of optimization in order to solve this problem. The proposed criteria are longevity, cost, comfort. The paper presents a series of specific examples of using the proposed principles with necessary generalizations. Key words: space life support systems, atmosphere revitalization equipment, automated control system, global generalized efficiency criteria, longevity, cost, comfort.
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