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On-line detection of aircraft icing: An application of optimal fault detection and isolation.

机译:飞机结冰的在线检测:最佳故障检测和隔离的应用。

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This dissertation describes an innovative method utilizing gain-scheduled optimal linear observers (Fault Detection and Isolation Filters) for on-line fault detection and isolation of failures in aircraft utilizing existing sensors and avionics. Aircraft icing, and tail-plane icing in particular, is a serious safety concern and current methods of detecting aircraft icing are generally inaccurate and unreliable. Ice detection is accomplished by modeling aircraft icing as an input failure to a dynamic system. The method described here will allow the retrofit of older planes because it only utilizes existing sensors. This icing detection method motivated two new methods for designing optimal fault detection and isolation filters. These methods utilize Linear Matrix Inequalities to solve for the optimal detection filter by allowing the user to specify the desired eigenstructure. The first involves a least squares approach while the second utilizes a direct parameterization of the estimator feedback gain. A Monte Carlo simulation of the proposed ice detection method shows that the improvement offered by this new design is substantial. This technology is applicable to the detection and isolation of degradation failures in all dynamical systems.
机译:本文介绍了一种利用增益调度的最佳线性观测器(故障检测和隔离滤波器)进行在线故障检测并利用现有传感器和航空电子设备隔离飞机故障的创新方法。飞机结冰,尤其是飞机尾翼的结冰是一个严重的安全问题,目前检测飞机结冰的方法通常是不准确和不可靠的。通过将飞机结冰建模为动态系统的输入故障来完成冰检测。由于此处描述的方法仅利用现有的传感器,因此将允许对较旧的飞机进行改造。这种结冰检测方法激发了两种设计最佳故障检测和隔离滤波器的新方法。这些方法通过允许用户指定所需的本征结构,利用线性矩阵不等式来求解最佳检测滤波器。第一种涉及最小二乘方法,而第二种则使用估算器反馈增益的直接参数化。拟议的冰探测方法的蒙特卡洛模拟表明,这种新设计提供了很大的改进。该技术适用于所有动态系统中退化故障的检测和隔离。

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