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Simulation of range safety for the NASA space shuttle

机译:模拟NASA航天飞机的射程安全

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摘要

Purpose - The main objective of this paper is to introduce the development of a decision-support environment for a complex problem: space range safety. Simulation modeling can provide a good environment to support range safety managers. Design/methodology/approach - The paper describes the different models and the processes to find the different knowledge sources. In addition, it investigates statistically the most important factors. This will help determine emergency management procedures and sources of variability. Findings - This case study provides guidance and an example to follow for other problems in aerospace (in particular new the analysis of new vehicles). There are important factors to consider in order to implement risk management in National Aeronautics and Space Administration. Research limitations/implications - There are several limitations; blast and debris effects need to be added. Practical implications - First, it provides a guide in order to persuade managers of the utilization of decision-support systems based on geographical information systems. Second, it shows that there is open source software (Calpuff in our environment) which can be used and integrated to make a more comprehensive environment. Validation is a big issue. In addition, simulation can help make decisions about future vehicles or events. Originality/value - This is the first implementation of a virtual range (there is not an integrated system similar to this one available). This will be valuable to other safety managers not only for space exploration but also environmentalists and homeland security managers.
机译:目的-本文的主要目的是介绍针对复杂问题的决策支持环境的开发:空间范围安全。仿真建模可以提供一个良好的环境来支持范围安全经理。设计/方法/方法-本文描述了不同的模型和找到不同知识来源的过程。此外,它还在统计上调查最重要的因素。这将有助于确定应急管理程序和可变性的来源。调查结果-该案例研究为航空航天中的其他问题(尤其是对新车辆的分析)提供了指导和实例。在国家航空航天局执行风险管理时,需要考虑一些重要因素。研究局限性/含义-有一些局限性;需要添加爆炸和碎片影响。实际意义-首先,它提供了一个指南,以便说服管理人员使用基于地理信息系统的决策支持系统。其次,它表明存在开源软件(在我们的环境中为Calpuff),可以使用该软件并将其集成为更全面的环境。验证是一个大问题。此外,模拟可以帮助做出有关未来车辆或事件的决策。原创性/价值-这是虚拟范围的第一个实现(没有类似的集成系统可用)。这不仅对太空探索的其他安全管理人员,而且对环保主义者和国土安全管理人员而言,都是宝贵的。

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