Enhanced fault detection and isolation in modern flight actuators

D. Ossmann
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引用次数: 2

Abstract

Due to their central location in the control system, actuation systems of primary control surfaces in modern, augmented aircraft must show an increased reliability. A traditional approach is based on hardware redundancy. In this way, modern actuation systems of one single control surface consist of up to two actuators and three sensors. These different dynamic subsystems are all prone to faults themselves and can be monitored. This paper presents the setup of a fault detection and diagnosis (FDD) system to systematically detect and isolate faults in the subcomponents of an actuation system. Based on the achievable fault signature matrix of the system, a residual filter is designed using nullspace theory. The residuals of the proposed filter form the basis of the decision making process to detect an isolate the faults. The developed FDD system is implemented into a nonlinear aircraft model, allowing a profound validation of the FDD system's detection and isolation performance for different actuator and sensor fault scenarios.
增强故障检测和隔离在现代飞行执行器
由于它们在控制系统中的中心位置,现代增强型飞机的主控制面作动系统必须显示出更高的可靠性。传统的方法是基于硬件冗余。这样,一个单一控制面的现代驱动系统由多达两个执行器和三个传感器组成。这些不同的动态子系统本身都容易出现故障,并且可以被监控。本文介绍了一种故障检测与诊断(FDD)系统的建立,用于系统地检测和隔离作动系统各子部件的故障。基于系统可实现的故障特征矩阵,利用零空间理论设计了残差滤波器。所提滤波器的残差构成了检测和隔离故障的决策过程的基础。开发的FDD系统被实现到一个非线性飞机模型中,允许对FDD系统在不同执行器和传感器故障场景下的检测和隔离性能进行深入验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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