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Fault detection of a flight control computer in a harsh electromagnetic environment

机译:恶劣电磁环境下飞控计算机的故障检测

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Verifying functional integrity of flight control computers (FCC) in harsh electromagnetic environments is a key issue in development, certification, and operation of systems performing flight critical functions. A strategy is being developed for real-time detection of control command errors caused by electromagnetic environments in FCCs during validation testing. A system level approach to FCC fault detection and mitigation in real time is proposed. Monitoring the health of the FCC based on analysis of simplex flight path data is proposed. This data are collected during nominal closed loop tests of an AlliedSignal quad-redundant FCC interfaced to an emulation of the aircraft engines, sensors, and actuators, and running B737 Autoland control laws. Each flight entails the aircraft landing during disturbances associated with wind gusts. Sensor inputs and command outputs for every frame are stored for each flight. System Identification techniques are applied to the data to approximate nonlinear models for the commands.
机译:在恶劣的电磁环境下,验证飞行控制计算机(FCC)的功能完整性是执行飞行关键功能的系统的开发,认证和操作的关键问题。正在开发一种策略,用于在验证测试期间实时检测由FCC中的电磁环境引起的控制命令错误。提出了一种实时的FCC故障检测与缓解的系统级方法。提出了基于单纯形航迹数据分析的FCC运行状况监测方法。该数据是在AlliedSignal四冗余FCC的名义闭环测试期间收集的,该FCC与飞机发动机,传感器和执行器的仿真接口,并符合B737 Autoland控制律。每次飞行都会使飞机在与阵风有关的干扰中降落。每次飞行都会存储每一帧的传感器输入和命令输出。系统识别技术应用于数据,以近似命令的非线性模型。

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