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Modelling the Fault Behaviour of a Superconducting Turboelectric Distributed Propulsion Network

机译:模拟超导涡轮电分布推进网络的故障行为

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Turboelectric Distributed Propulsion (TeDP) is actively being investigated as a means of providing thrust in future generations of aircraft. In response to the lack of published work regarding the system-level fault behaviour of a fully superconducting network, this paper presents key points from a two stage Failure Modes and Effects Analysis (FMEA) of a representative TeDP network. The first stage FMEA examines the qualitative behaviour of various network failure modes and considers the subsequent effects on the operation of the remainder of the network, enabling the identification of key variables influencing the fault response of the network. For the second stage FMEA, the paper focuses on the characterisation of the rate at which electrical faults develop within a TeDP network. The impact of system quench and associated rise in network resistance as well as network parameters such as network voltage and pre-fault current, on the resulting fault profile are also examined using a range of sensitivity studies.
机译:积极调查涡轮电分布推进(TEDP)作为在未来几代飞机中提供推力的手段。为了响应完全超导网络的系统级故障行为缺乏发布的工作,本文介绍了代表TEDP网络的两级故障模式和效果分析(FMEA)的关键点。第一阶段FMEA检查各种网络故障模式的定性行为,并认为在该网络的其余部分的操作后续的效果,使得能够影响网络的故障响应的关键变量的鉴定。对于第二阶段FMEA,本文侧重于特征在于TEDP网络内电故障的速率。还使用一系列敏感性研究检查系统淬火和网络电阻和网络电阻和预故障电流等网络参数的影响。

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