A computational framework for making early design decisions in deep space habitats

IF 4 2区 工程技术 Q2 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
Amir Behjat , Xiaoyu Liu , Oscar Forero , Roman Ibrahimov , Shirley Dyke , Ilias Bilionis , Julio Ramirez , Dawn Whitaker
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引用次数: 0

Abstract

The dynamics of systems of systems often involve complex interactions among the individual systems, making the implications of design choices challenging to predict. Design features in such systems may trigger unexpected behaviors or result in large variations in safety, performance or resilience. To provide a means of simulating such systems for aiding in these decisions, we have developed a prototype tool, the control-oriented dynamic computational modeling tool (CDCM). The CDCM provides rapid simulation capabilities to perform trade studies in systems of systems. The general class of systems of systems that we aim to examine involve multiple hazards, damage, cascading consequences, repair and recovery. We especially focus on systems-of-systems that incorporate a health management system (HMS) that can monitor the state of the habitat and make decisions about actions to take. In this paper we describe the features of the CDCM, the architecture we devised for simulation of systems-of-systems, the unique functionalities of this tool, and we provide a demonstration of the capabilities by performing two illustrative examples. We articulate the use of this tool for making early design decisions and demonstrate its use for trade studies that consider a model of a deep space habitat. We also share some experiences and lessons that may be useful for others seeking to address similar problems.

深空栖息地早期设计决策的计算框架
系统之系统的动态往往涉及单个系统之间复杂的相互作用,使得设计选择的影响难以预测。此类系统中的设计特征可能会引发意想不到的行为,或导致安全、性能或弹性方面的巨大变化。为了提供一种模拟此类系统的方法,以帮助做出这些决策,我们开发了一种原型工具,即面向控制的动态计算建模工具(CDCM)。CDCM 具备快速模拟能力,可对系统进行贸易研究。我们要研究的系统之系统的一般类别涉及多重危害、损害、连锁后果、修复和恢复。我们尤其关注包含健康管理系统(HMS)的系统之系统,该系统可监控栖息地的状态,并就应采取的行动做出决策。在本文中,我们介绍了 CDCM 的特点、我们为模拟系统而设计的架构、该工具的独特功能,并通过两个示例演示了其功能。我们阐述了该工具在早期设计决策中的应用,并演示了它在考虑深空栖息地模型的贸易研究中的应用。我们还分享了一些经验和教训,这些经验和教训可能对其他寻求解决类似问题的人有用。
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来源期刊
Advances in Engineering Software
Advances in Engineering Software 工程技术-计算机:跨学科应用
CiteScore
7.70
自引率
4.20%
发文量
169
审稿时长
37 days
期刊介绍: The objective of this journal is to communicate recent and projected advances in computer-based engineering techniques. The fields covered include mechanical, aerospace, civil and environmental engineering, with an emphasis on research and development leading to practical problem-solving. The scope of the journal includes: • Innovative computational strategies and numerical algorithms for large-scale engineering problems • Analysis and simulation techniques and systems • Model and mesh generation • Control of the accuracy, stability and efficiency of computational process • Exploitation of new computing environments (eg distributed hetergeneous and collaborative computing) • Advanced visualization techniques, virtual environments and prototyping • Applications of AI, knowledge-based systems, computational intelligence, including fuzzy logic, neural networks and evolutionary computations • Application of object-oriented technology to engineering problems • Intelligent human computer interfaces • Design automation, multidisciplinary design and optimization • CAD, CAE and integrated process and product development systems • Quality and reliability.
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