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An integrated aerospace requirement setting and risk analysis tool for life cycle cost reduction and system design improvement

机译:集成的航空航天需求设定和风险分析工具,可降低生命周期成本并改善系统设计

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摘要

In the early conceptual stage of the service orientated model, decisions regarding the design of a new technical product are largely influenced by Service Requirements. Those decisions, therefore, have to merge both technical and business aspects to obtain desired product reliability and reduced Whole Life Cost (WLC). It is, therefore, critical at that phase to define the risk of potential noncompliance of Service Requirements in order to ensure the right design choices; as these decisions have a large impact on the overall product and service development.This paper presents outcome of research project to investigate different approaches used by companies to analyse Service Requirements to achieve reduced Life Cycle Cost (LCC). Analysis using Weibull distribution and Monte Carlo principle have been proposed here; based on the conducted literature review these are considered as the most widely used techniques in product reliability studies. Based on those techniques, a methodology and its software tool for risk evaluation of failure to deliver a new product against Service Requirements are presented in this paper. This is part of the on-going research project which, apart from analysing the gap between the current Service Requirements achievements and the design targets for a new aircraft engine, it also facilitates an optimisation of those requirements at the minimum risk of nonconformity.
机译:在面向服务的模型的早期概念阶段,有关新技术产品设计的决策在很大程度上受到服务需求的影响。因此,这些决定必须合并技术和业务方面,以获得所需的产品可靠性和降低的整体生命成本(WLC)。因此,在该阶段至关重要的是定义可能不符合服务要求的风险,以确保正确的设计选择;由于这些决定对整体产品和服务开发有很大影响。本文介绍了研究项目的结果,以调查公司用于分析服务需求以减少生命周期成本(LCC)的不同方法。这里提出了使用威布尔分布和蒙特卡洛原理的分析。根据进行的文献回顾,这些被认为是产品可靠性研究中使用最广泛的技术。基于这些技术,本文介绍了一种针对服务要求交付新产品失败的风险评估方法和软件工具。这是正在进行的研究项目的一部分,该项目除了分析当前“服务需​​求”成就与新型飞机发动机的设计目标之间的差距外,还有助于以最小的不合格风险优化这些需求。

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