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Attack-resilient energy management architecture of hybrid emergency power system for more-electric aircrafts

机译:用于更多电气飞机的混合动力系统的攻击 - 弹性能量管理结构

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This paper proposes an attack-resilient energy management architecture for a hybrid emergency power system of More-Electric Aircrafts (MEAs). Our proposed architecture develops an Adaptive Neuro-Fuzzy Interference System (ANFIS)-based method to evaluate the integrity of the power output of the fuel-cell in the fuel-cell based hybrid auxiliary power unit (APU), which is vulnerable to the cyber-attacks and critical for the effective energy management and emergency control. Our ANFIS-based method achieves the integrity evaluation by leveraging the real-time measures on the State of Charge (SOC) of the battery, power output of the ultra-capacitor and the load profile. In our simulation, we evaluate the performance of our proposed ANFIS-based method to support the integrity of the Energy Management Strategies (EMSs) used in hybrid emergency power system for more-electric aircrafts by using MATLAB/Simulink. Our simulation results illustrate the effectiveness of our proposed method in effectively evaluating the integrity of critical data and achieving resilient control.
机译:本文提出了一种用于更多电动机的混合动力系统(MEA)的攻击弹性能量管理架构。我们所提出的架构开发了一种自适应的神经模糊干扰系统(ANFIS)的基础方法,以评估基于燃料电池的混合动力辅助动力单元(APU)中燃料电池的功率输出的完整性,这易受网络 - 为有效的能源管理和应急控制至关重要。我们基于ANFIS的方法通过利用电池的充电状态(SOC)的实时措施,超电容器的功率输出和负载轮廓来实现完整性评估。在我们的模拟中,我们评估了我们提出的基于ANFIS的方法的表现,以支持混合动力应急电力系统中使用的能量管理策略(EMS)的完整性,通过使用MATLAB / Simulink。我们的仿真结果说明了我们提出的方法在有效评估关键数据的完整性和实现弹性控制的效果。

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