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A methodology to quantify some IVHM requirements during RLV conceptual design

机译:一种方法,用于在RLV概念设计期间量化一些IVHM要求的方法

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Based on high level safety and cost requirements, system architects and subsystem engineers are called upon to provide requirements at a lower level during the conceptual design phase of a reusable launch vehicle (RLV). This paper describes an event tree based methodology for quantitatively assessing the limits of some of the lower-level integrated vehicle health management (IVHM) requirements during RLV conceptual design. The metrics assessed in the paper are fault detection coverage, false alarm probability, fault isolation capability, probability of IVHM failing to detect a fault, and safety allocation. The fault detection and isolation metrics were assessed based on their applicability with respect to cost and safety in the mission and turnaround phase of the RLV operations. The paper shows that the mission-phase requirement for IVHM fault detection coverage for a subsystem is large (more stringent) when IVHM needs to make the subsystem safer, the failure remediation probability is small, and the subsystem is already reliable. The requirement on IVHM false alarm rate in the mission phase is small (more stringent) when the subsystem is reliable, IVHM needs to make the subsystem safer, and IVHM should cause fewer false aborts. The paper concludes by stressing the use of appropriate system analysis and optimization in allocating IVHM requirements to a subsystem of the RLV. Although the paper is written from an IVHM and RLV perspective, it is targeted towards system engineers/architects who are interested in estimating the effects of fault detection and isolation requirements during conceptual design.
机译:基于高级安全性和成本要求,呼吁系统架构师和子系统工程师在可重复使用的发射车辆(RLV)的概念设计阶段,在较低级别提供要求。本文介绍了一种基于事件树的方法,用于定量评估RLV概念设计期间一些较低级别的综合车辆健康管理(IVHM)要求的限制。本文评估的指标是故障检测覆盖,误报概率,故障隔离能力,IVHM概率无法检测到故障,安全分配。根据其在RLV操作的任务和周转阶段的成本和安全性的适用性来评估故障检测和隔离度量。本文显示,当IVHM需要使子系统更安全时,子系统的IVHM故障检测覆盖的任务阶段要求大(更严格),故障修复概率很小,子系统已经可靠。当子系统可靠时,任务阶段的IVHM误报率的要求很小(更严格),IVHM需要使子系统更安全,并且IVHM应该导致较少的错误中止。本文通过强调使用适当的系统分析和优化在将IVHM要求分配给RLV的子系统的情况下结论。虽然本文是由IVHM和RLV的透视写入的,但它针对有兴趣估算概念设计期间故障检测和隔离要求的影响的系统工程师/建筑师。

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