首页> 外文会议>ASME(American Society of Mechanical Engineers) Turbo Expo vol.2; 20060506-11; Barcelona(ES) >HYBRID KALMAN FILTER APPROACH FOR AIRCRAFT ENGINE IN-FLIGHT DIAGNOSTICS: SENSOR FAULT DETECTION CASE
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HYBRID KALMAN FILTER APPROACH FOR AIRCRAFT ENGINE IN-FLIGHT DIAGNOSTICS: SENSOR FAULT DETECTION CASE

机译:飞机发动机空中诊断的混合卡尔曼滤波方法:传感器故障检测案例

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摘要

In this paper, a diagnostic system based on a uniquely structured Kalman filter is developed for its application to inflight fault detection of aircraft engine sensors. The Kalman filter is a hybrid of a nonlinear on-board engine model (OBEM) and piecewise linear models. The utilization of the nonlinear OBEM allows the reference health baseline of the diagnostic system to be updated, through a relatively simple process, to the health condition of degraded engines. Through this health baseline update, the diagnostic effectiveness of the in-flight sensor fault detection system is maintained as the health of the engine degrades over time. The performance of the sensor fault detection system is evaluated in a simulation environment at several operating conditions during the cruise phase of flight.
机译:在本文中,开发了一种基于独特结构的卡尔曼滤波器的诊断系统,将其应用于飞机发动机传感器的飞行中故障检测。卡尔曼滤波器是非线性车载发动机模型(OBEM)和分段线性模型的混合体。非线性OBEM的使用允许通过相对简单的过程将诊断系统的参考运行状况基线更新为退化发动机的运行状况。通过此运行状况基线更新,当发动机的运行状况随时间推移而下降时,可保持飞行中传感器故障检测系统的诊断有效性。在飞行巡航阶段的几个操作条件下,在仿真环境中评估传感器故障检测系统的性能。

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