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Technology Infusion and Resource Allocation for a Civil Tiltrotor

机译:公民拆放器的技术输液与资源分配

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The methodology presented in this paper is concerned with the ability to make informed decisions early in the design time line in order to provide a feasible, viable and robust system to the customer. Increasingly, the issues of affordability, uncertainty in design and technology impact assessment are shaping the modern design environment. Current methodologies and techniques are not able to properly handle these issues. The research presented here builds on the authors' previous work which described an appropriate probabilistic design environment that allows for design in the presence of uncertainty as well as the infusion and assessment of new technologies. This environment is an essential part of a design methodology referred to as the Technology Identification, Evaluation and Selection (TIES) method. The objective of this research is to provide a comprehensive, structured, and robust methodology for decision making in the early phases of rotorcraft design. In this paper the authors will describe in detail the steps that encompass the TIES methodology. Illustrative examples of techniques, methods and tools used during the methodology will be presented as applied to NASA's Short Haul Civil Tiltrotor.
机译:本文提出的方法涉及在设计时间线上提前做出明智决策的能力,以便为客户提供可行,可行和强大的系统。越来越多地是负担能力,设计和技术影响评估的不确定性正在塑造现代设计环境。目前的方法和技术无法正确处理这些问题。这里提出的研究在此上面建立了先前的工作,其中描述了一个适当的概率设计环境,允许在存在不确定性的情况下设计以及对新技术的输注和评估。该环境是设计方法的重要组成部分,称为技术识别,评估和选择(TIES)方法。本研究的目的是提供全面,结构化和强大的方法,用于在旋翼设计的早期阶段进行决策。在本文中,作者将详细描述包含关系方法的步骤。在方法中使用的技术,方法和工具的说明性示例将被呈现给NASA的短途公民倾斜罗。

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