GPS fault detection with IMU and aircraft dynamics


Autoria(s): Bruggemann, Troy S.; Greer, Duncan G.; Walker, Rodney A.
Data(s)

01/01/2011

Resumo

Approaches with Vertical Guidance (APV) can provide greater safety and cost savings to general aviation through accurate GPS horizontal and vertical navigation. However, GPS needs augmentation to achieve APV fault detection requirements. Aircraft Based Augmentation Systems (ABAS) fuse GPS with additional sensors at the aircraft. Typical ABAS designs assume high-quality inertial sensors with Kalman filters but these are too expensive for general aviation. Instead of using high-quality (and expensive) sensors, the purpose of this paper is to investigate augmenting GPS with a low-quality MEMS IMU and Aircraft Dynamic Model (ADM). The IMU and ADM are fused together using a multiple model fusion strategy in a bank of Extended Kalman Filters (EKF) with the Normalized Solution Separation (NSS) fault detection scheme. A tightly-coupled configuration with GPS is used and frequent GPS updates are applied to the IMU and ADM to compensate for their errors. Based upon a simulated APV approach, the performance of this architecture in detecting a GPS ramp fault is investigated showing a performance improvement over a GPS-only “snapshot” implementation of the NSS method. The effect of fusing the IMU with the ADM is evaluated by comparing a GPS-IMU-ADM EKF with a GPS-IMU EKF where a small improvement in protection levels is shown.

Formato

application/pdf

Identificador

http://eprints.qut.edu.au/32934/

Publicador

IEEE

Relação

http://eprints.qut.edu.au/32934/1/c32934a.pdf

DOI:10.1109/TAES.2011.5705677

Bruggemann, Troy S., Greer, Duncan G., & Walker, Rodney A. (2011) GPS fault detection with IMU and aircraft dynamics. IEEE Transactions on Aerospace and Electronic Systems, 47(1), pp. 305-316.

Direitos

Copyright 2009 IEEE

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Fonte

Australian Research Centre for Aerospace Automation; Faculty of Built Environment and Engineering; School of Engineering Systems

Palavras-Chave #090105 Avionics #aircraft dynamics #aircraft navigation #Global Positioning System #inertial navigation #fault detection
Tipo

Journal Article