Adaptive Threshold Real-Time Condition Monitoring and Assessment of Unmanned Aircraft Actuator Based on Two-Stage Observer
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Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-19-6613-2_330
Reference20 articles.
1. Schoofs, H., Delalieux, S., Deckers, T., Bylemans, D.: Fire Blight Monitoring in Pear Orchards by Unmanned Airborne Vehicles (unmanned aircraft) Systems Carrying Spectral Sensors. Agronomy 10(5) (2020).
2. Cao, LJ., Li, XF., Hu, Y. Liu, MT., Li, JF.: Discrete-time Incremental Backstepping Controller for Unmanned Aircrafts Subject to Actuator Constraints. Aerospace Science and Technology 96 (2020).
3. Baldini, A., Felicetti, R., Freddi, A., Longhi, S., Monteriù, A.: Actuator Fault-Tolerant Control Architecture for Multirotor Vehicles in Presence of Disturbances. Journal of Intelligent & Robotic Systems 99(3–4), 859–874 (2020). https://doi.org/10.1007/s10846-020-01150-y
4. Liang, SJ., Zhang, SR., Huang, YP., Zheng, X., Cheng, J., Wu, SS.: Data-driven Fault Diagnosis of FW-unmanned Aircrafts with Consideration of Multiple Operation Conditions. ISA Transactions (2021).
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