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A Method for the Evaluation of the Effectiveness of Turboelectric Distributed Propulsion Power System Architectures

机译:涡轮电分布式推进动力系统架构有效性评估方法

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Radical new electrically propelled aircraft are being considered to meet strict future performance goals. One concept design proposed is a Turboelectric Distributed Propulsion (TeDP) aircraft that utilises a number of electrically driven propulsors. Such concepts place a new and significant reliance on an aircraft's electrical system for safe and efficient flight. Accordingly, in addition to providing certainty that supply reliability targets are being met, a contingency analysis, evaluating the probability of component failure within the electrical network and the impact of that failure upon the available thrust must also be undertaken for architecture designs. Solutions that meet specified thrust requirements at a minimum associated weight are desired as these will likely achieve the greatest performance against the proposed emissions targets. This paper presents a Fault Tree Analysis (FTA) based design approach for the electrical system and thrust reliability analysis of TeDP aircraft architectures. This approach extends beyond the single failure rate provided by traditional FTA methods by profiling the reliability and thrust provision of each possible system configuration (i.e. following the failure of one or more components), which combined with a measure of total system weight and volume provides an effective design capability. The paper presents a case study for a TeDP design configuration showing how Thrust - Reliability (TR) dispatch targets may be achieved using a contingency analysis method utilising k-out-of-n probability and concludes by discussing plans to build upon the described work and utilise the method for more complex studies.
机译:激进的新型电动飞机正在考虑满足严格的未来性能目标。提出的一个概念设计是一种涡轮电分布式推进(TeDP)飞机,该飞机利用了许多电动推进器。这些概念极大地依赖了飞机的电气系统以实现安全高效的飞行。因此,除了确定满足供电可靠性目标的确定性之外,对于体系结构设计,还必须进行应变分析,评估电网内组件故障的可能性以及该故障对可用推力的影响。需要以最小的相关重量满足指定推力要求的解决方案,因为这些解决方案很可能会在提出的排放目标方面实现最大的性能。本文提出了一种基于故障树分析(FTA)的设计方法,用于电气系统和TeDP飞机架构的推力可靠性分析。该方法通过分析每种可能的系统配置的可靠性和推力提供情况(即跟随一个或多个组件的故障),扩展了传统FTA方法提供的单一故障率,并结合了系统总重量和体积的度量。有效的设计能力。本文介绍了一个TeDP设计配置的案例研究,该案例显示了使用k-out-n概率的权变分析方法如何实现推力-可靠性(TR)调度目标,并通过讨论基于所描述工作和解决方案的计划得出结论。利用该方法进行更复杂的研究。

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