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ELECTRIFIED AIRCRAFT PROPULSION SYSTEMS: GAS TURBINE CONTROL CONSIDERATIONS FOR THE MITIGATION OF POTENTIAL FAILURE MODES AND HAZARDS

机译:电气化的飞机推进系统:燃气轮机控制潜在失效模式和危险的减轻

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This paper provides a high-level review of the potential failure modes and hazards to which electrified aircraft propulsion (EAP) systems are susceptible, along with potential gas turbine control-based strategies to assist in the mitigation of those failures. To introduce the types of failures that an EAP system may experience, a generic EAP system is considered, consisting of gas turbine engines, mechanical drives, electric machines, power electronics and distribution systems, energy storage devices, and motor driven propulsors. The functionality provided by each of these EAP subsystems is discussed, along with their potential failure modes, and possible strategies for mitigating those failures. To further illustrate the role of gas turbine controls in mitigating EAP failure modes, an example based on a simulated EAP concept aircraft proposed by NASA is given. The effects of failures are discussed, along with turbomachinery control strategies, including reversionary control modes, and control limit logic.
机译:本文提供了对电流故障模式和电气化飞机推进(EAP)系统易受影响的潜在故障模式和危害的高级别审查,以及潜在的燃气轮机控制的策略,以帮助减轻这些故障。为了介绍EAP系统可能经验的故障类型,考虑了通用EAP系统,由燃气涡轮发动机,机械驱动器,电机,电力电子和分配系统,能量存储装置和电动机驱动推进器组成。通过这些EAP子系统中的每一个提供的功能以及它们的潜在故障模式,以及用于减轻这些故障的可能策略。为了进一步说明燃气轮机控制在减轻EAP失败模式中的作用,给出了基于NASA提出的模拟EAP概念飞机的示例。讨论故障的影响以及涡轮机械控制策略,包括重载控制模式和控制限制逻辑。

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