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2024 | OriginalPaper | Buchkapitel

2. Convex Optimization-Based Fault-Tolerant Control for Dissimilar Redundant Actuation System of Civil Aircraft

verfasst von : Xingjian Wang, Yuwei Zhang, Shaoping Wang

Erschienen in: Fault Tolerant Control of Large Civil Aircraft

Verlag: Springer Nature Singapore

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Abstract

This chapter introduces a novel approach to enhance the reliability and safety of modern commercial aircraft through convex optimization-based fault-tolerant control (CO-FTC) for dissimilar redundant actuation systems (DRAS). The DRAS, which includes a hydraulic actuator (HA) and electro-hydrostatic actuator (EHA), is briefly introduced and modeled in a state space framework with gradual faults. In order to improve the flight safety with gradual DRAS faults, a convex optimization-based fault-tolerant control (CO-FTC) strategy optimizes the control gain matrix via linear matrix inequalities (LMIs) to ensure stability despite faults. Unlike traditional methods, a novel subsystem-based technique is employed to enhance system performance under faults. Comprehensive case studies illustrate the necessity of fault tolerance, validating the CO-FTC strategy’s efficacy. Comparative analysis of simulation results demonstrates its robustness and effectiveness in contrast to existing methods.

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Literatur
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Metadaten
Titel
Convex Optimization-Based Fault-Tolerant Control for Dissimilar Redundant Actuation System of Civil Aircraft
verfasst von
Xingjian Wang
Yuwei Zhang
Shaoping Wang
Copyright-Jahr
2024
Verlag
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-97-1654-8_2

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