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Enhancing the systems decision process with flexibility analysis for optimal unmanned aircraft system selection

机译:通过灵活性分析增强系统决策过程,以实现最佳的无人机系统选择

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摘要

Systems Engineers often conduct decision analysis in order to provide decision makers with a quantifiable means to make decisions. However, the field of Systems Engineering is often criticized for focusing on processes and requirements instead of the actual system. As a result, it limits the decision maker's ability to understand the system's properties and behaviors. This research enhances an existing decision methodology in order to maintain holistic thinking and provide decision makers with measureable information that result in better decisions. This thesis explores commercial, off the shelf systems in order to provide a potential solution to a backpackable, lethal unmanned aircraft system (UAS). It first employs the Systems Decision Process which is a widely applicable decision method that focuses on system function and requirements in order to select an optimal solution. The System Decision Process utilizes the additive value model. The additive value model is a universally accepted quantitative approach for evaluating a candidate solution space in order to determine a best solution. This research then applies Flexibility Analysis in order to enhance the System Decision Process. Flexibility Analysis is a three step process developed by the researcher. The first step involves decomposing and modeling the UAS as a system of systems. The next step introduces the Requirements Flexibility Graph as a structured technique which incorporates stakeholder levels of acceptability along with the engineers' stochastic estimates of a system's changeability with respect to constraints.
机译:系统工程师经常进行决策分析,以便为决策者提供可量化的决策方法。但是,经常批评系统工程领域关注过程和需求而不是实际系统。结果,它限制了决策者了解系统属性和行为的能力。这项研究增强了现有的决策方法,以保持整体思维,并为决策者提供可衡量的信息,从而产生更好的决策。本文探讨了现成的商用系统,以便为可背包,致命的无人机系统(UAS)提供潜在的解决方案。它首先采用了系统决策过程,这是一种广泛适用的决策方法,着重于系统功能和需求以选择最佳解决方案。系统决策过程利用附加值模型。加值模型是一种普遍接受的量化方法,用于评估候选解决方案空间以确定最佳解决方案。然后,本研究应用灵活性分析以增强系统决策过程。灵活性分析是研究人员开发的三步过程。第一步涉及将UAS分解和建模为系统系统。下一步将需求灵活性图引入为一种结构化技术,该方法将涉众的可接受性级别与工程师对系统相对于约束的可变性的随机估计结合在一起。

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