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Fault behaviour of a superconducting turboelectric distributed propulsion aircraft network: A comprehensive sensitivity study

机译:超导涡轮电分布式推进飞机网络的故障行为:综合敏感性研究

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Variations in the network architecture and component choices of superconducting DC networks proposed for future aircraft propulsion systems could have a significant impact on their fault response. Understanding these potential variations is key to developing effective protection solutions for these aircraft applications. To this end, this paper presents the results of sensitivity studies conducted using a representative model of a faulted superconducting DC network in which key system parameters are varied. Of the parameters considered, network voltage and the cable dimensions are shown to have the greatest impact on fault current profile whilst the rate of change of fault current is shown to be sensitive to network voltage and cable length. The paper concludes by exploring the implications of these findings on the prospective protection strategy for future aircraft propulsion systems.
机译:提议用于未来飞机推进系统的超导DC网络的网络体系结构和组件选择的变化可能对其故障响应产生重大影响。了解这些潜在的变化是为这些飞机应用开发有效的保护解决方案的关键。为此,本文介绍了使用故障超导直流网络的代表性模型(其中关键系统参数已更改)进行的敏感性研究的结果。在考虑的参数中,网络电压和电缆尺寸显示出对故障电流分布的最大影响,而故障电流的变化率显示出对网络电压和电缆长度敏感。本文最后通过探讨这些发现对未来飞机推进系统的预期保护策略的意义进行总结。

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