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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Isolating incipient sensor faults and system reconfiguration in a flight control actuation system
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Isolating incipient sensor faults and system reconfiguration in a flight control actuation system

机译:隔离飞行控制执行系统中的初始传感器故障并重新配置系统

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This article presents the application of the additive form of the unscented Kalman filter (UKF-A) for the detection and isolation of incipient sensor faults in an electromechanical flight control actuation system. The detailed model of the actuator including mounting structure stiffness, load dynamics, compensators, power amplifier, and friction non-linearity is considered. The scheme utilizes the analytical redundancy that exists in the system between the linear actuator position, motor shaft angular velocity, and motor current for the diagnosis of incipient sensor faults in the system. Fault diagnosis is carried out using a single UKF-A, which is driven by the motor shaft velocity sensor. The onset of incipient sensor faults such as bias and scale factor faults in position and current sensor are detected and isolated using structured residuals that are generated using the UKF-A estimates. Bias and scale factor errors in the velocity sensor are detected using the statistical properties of the innovation sequence of the UKF-A. In the event of fault in the position sensor, real time reconfiguration using an estimate of the position from the UKF-A is used for continued operation of the system. Simulation results indicate that the isolation scheme formulated is capable of efficiently identifying incipient sensor faults and the reconfiguration scheme permits continued operation of the system in the presence of position sensor faults.
机译:本文介绍了无味卡尔曼滤波器(UKF-A)的加法形式在机电飞行控制致动系统中检测和隔离初发传感器故障中的应用。考虑了执行器的详细模型,包括安装结构的刚度,负载动力学,补偿器,功率放大器和摩擦非线性。该方案利用系统中存在的线性致动器位置,电动机轴角速度和电动机电流之间的分析冗余来诊断系统中的初始传感器故障。使用单个UKF-A进行故障诊断,该UKF-A由电机轴速度传感器驱动。使用UKF-A估计值生成的结构化残差,可以检测并隔离诸如位置和电流传感器中的偏差和比例因子故障之类的初始传感器故障的发生。使用UKF-A创新序列的统计特性检测速度传感器中的偏差和比例因子误差。如果位置传感器发生故障,则使用UKF-A估算的位置进行实时重新配置,以使系统继续运行。仿真结果表明,制定的隔离方案能够有效地识别初期传感器故障,而重新配置方案则允许在存在位置传感器故障的情况下使系统继续运行。

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