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Requirements Development Issues for Advanced Life Support Systems: Solid Waste Management

机译:先进生命支持系统的需求开发问题:固体废物管理

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摘要

Long duration missions pose substantial new challenges for solid waste management in Advanced Life Support (ALS) systems. These possibly include storing large volumes of waste material in a safe manner, rendering wastes stable or sterilized for extended periods of time, and/or processing wastes for recovery of vital resources. This is further complicated because future missions remain ill-defined with respect to waste stream quantity, composition and generation schedule. Without definitive knowledge of this information, development of requirements is hampered. Additionally, even if waste streams were well characterized, other operational and processing needs require clarification (e.g. resource recovery requirements, planetary protection constraints). Therefore, the development of solid waste management (SWM) subsystem requirements for long duration space missions is an inherently uncertain, complex and iterative process. The intent of this paper is to address some of the difficulties in writing requirements for missions that are not completely defined. This paper discusses an approach and motivation for ALS SWM requirements development, the characteristics of effective requirements, and the presence of those characteristics in requirements that are developed for uncertain missions. Associated drivers for life support system technological capability are also presented. A general means of requirements forecasting is discussed, including successive modification of requirements and the need to consider requirements integration among subsystems.
机译:长期任务对高级生命支持(ALS)系统中的固体废物管理提出了重大的新挑战。这些措施可能包括以安全的方式存储大量废料,使废料长时间稳定或灭菌和/或处理废料以回收重要资源。由于将来的任务在废物流的数量,组成和产生时间表方面仍然不确定,这使情况更加复杂。没有这些信息的确切知识,就会阻碍需求的发展。此外,即使对废物流进行了很好的分类,也需要澄清其他操作和处理需求(例如资源回收要求,行星保护约束)。因此,为长期太空飞行任务开发固体废物管理(SWM)子系统要求是一个固有的不确定,复杂和反复的过程。本文的目的是解决在编写任务要求不完全时遇到的一些困难。本文讨论了ALS SWM需求开发的方法和动机,有效需求的特征以及针对不确定任务而开发的需求中这些特征的存在。还介绍了生命支持系统技术能力的相关驱动因素。讨论了需求预测的一般方法,包括对需求的连续修改以及考虑子系统之间的需求集成的需求。

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