2018
DOI: 10.3390/s18072332
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Fault Detection and Isolation via the Interacting Multiple Model Approach Applied to Drive-By-Wire Vehicles

Abstract: The place of driving assistance systems is currently increasing drastically for road vehicles. Paving the road to the fully autonomous vehicle, the drive-by-wire technology could improve the potential of the vehicle control. The implementation of these new embedded systems is still limited, mainly for reliability reasons, thus requiring the development of diagnostic mechanisms. In this paper, we investigate the detection and the identification of sensor and actuator faults for a drive-by-wire road vehicle. An … Show more

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Cited by 18 publications
(3 citation statements)
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“…where U is a Haar unitary matrix, A u A T u = AA T . According to equation (4), LESs of A u is given by the following formula:…”
Section: ) Fault Detectionmentioning
confidence: 99%
“…where U is a Haar unitary matrix, A u A T u = AA T . According to equation (4), LESs of A u is given by the following formula:…”
Section: ) Fault Detectionmentioning
confidence: 99%
“…[6]. In [7], the authors proposed an interacting multiple model approach based on an observer for highly non-linear vehicle dynamics. Through experimental vehicle signals, the algorithm has shown a rapid and robust identification of the faults from the sensor and actuator.…”
Section: Introductionmentioning
confidence: 99%
“…Mechanical controls in cars such as a steering wheel, a gas pedal, and a gearshift, have been converted into specific haptic interfaces, and integrated in steer-by-wire, drive-by-wire control systems, or advanced driver assistance/support systems [44][45][46][47][48][49][50][51][52][53][54][55][56]. In aircraft, the fly-by-wire approach integrates mechanical control inceptors such as sticks, yokes, or rudders [57][58][59][60].…”
Section: Introductionmentioning
confidence: 99%