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Methodology for the Safety and Reliability assessment of hypersonic transportation systems in conceptual design activities

机译:概念设计活动中超音速运输系统的安全和可靠性评估方法

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This paper suggests a methodology to support the safety and reliability assessment of hypersonic transportation systems in conceptual design activities. In particular, this research activity aims at overcoming the noticeable lack of statistical data related to safety and reliability characteristics of hypersonic transportation systems. At the beginning of the paper, a review of the existing methodologies currently in use for the safety and reliability assessment in conceptual and preliminary design of aeronautical and space systems is presented. In particular, the proposed methodology starts from an estimation algorithm already developed within the reaseach group which the authors belong to. This approach is based on a semi-empirical formulation that would allow to estimate Reliability, Availability, Maintainability and Safety characteristics for the entire transportation system and to allocate them on subsystems, equipment and component. Proper trend lines and interpolative polynomials are obtained for different aircraft category, based on the statistical available. The challenge faced in this paper is to suggest a way to generate and update of these semi-empirical models for the peculiar class of the hypersonic transportation systems, overcoming the noticeable problem of lack of statistical data at vehicle level. Considering the high level of complexity and integration of the hypersonic transportation systems and the mukidisciplinarity of the design activities, the presented methodology is fully integrated within a novel conceptual design workflow based on a Systems Engineering approach. In addition the paper reports, as case-study, the application of such a methodology at subsystem level. In particular, the example deals with the safety and reliability of a complex propulsion system guaranteeing vertical take-off capabilities to a trans-atmospheric vehicle aimed at performing parabolic flights (recognized to be a possible technological demonstrator of enabling technologies for hypersonic). Eventually, a massive application of the presented methodology to different test-cases for different families of hypersonic vehicles, will contribute to the characterization of an under-development database (HyDat) with the ultimate aim of increasing the confidence level of the new semi-empirical models.
机译:本文提出了一种支持概念设计活动中超音速运输系统的安全性和可靠性评估的方法。特别是,该研究活动旨在克服与超音速运输系统的安全性和可靠性特性有关的明显缺乏统计数据。在论文的开始,提出了审查目前用于安全性和可靠性评估的现有方法,概念和航天系统的初步设计。特别地,所提出的方法从已经在作者所属的reaseAce组中开发的估计算法开始。该方法基于半实证制定,允许估计整个运输系统的可靠性,可用性,可维护性和安全特性,并在子系统,设备和组件上分配它们。基于统计可用,针对不同的飞机类别获得适当的趋势线和内插多项式。本文面临的挑战是建议一种方法来为超音速运输系统的特殊类别产生和更新这些半实证模型,克服了车辆水平缺乏统计数据的明显问题。考虑到高度复杂性和超声波运输系统的高度复杂性和集成设计活动的MukidiCInarity,所呈现的方法基于系统工程方法的新颖概念设计工作流程完全集成。此外,本文报告,如案例研究,在子系统级别应用这种方法。特别是,该示例涉及一种复杂推进系统的安全性和可靠性,该系统可保证垂直剥离能力,以旨在执行抛物线飞行的跨大气动力(认定为实现高超型技术的技术示威者)。最终,对不同的超声车辆不同家庭的不同测试用例进行了大量的方法,将有助于表征下发明显的数据库(HYDAT),其最终目的是增加新的半经验的置信水平楷模。

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