Enhancing aerial robots performance through robust hybrid control and metaheuristic optimization of controller parameters
Author:
Publisher
Springer Science and Business Media LLC
Subject
Artificial Intelligence,Software
Link
https://link.springer.com/content/pdf/10.1007/s00521-023-09014-w.pdf
Reference26 articles.
1. Hafeez A, Husain MA, Singh S, Chauhan A, Khan MT, Kumar N, Chauhan A, Soni S (2022) Implementation of drone technology for farm monitoring & pesticide spraying: a review. Inf Process Agric
2. Alqudsi YS, Alsharafi AS, Mohamed A (2021) A review of airborne landmine detection technologies: Unmanned aerial vehicle-based approach. In: 2021 International congress of advanced technology and engineering (ICOTEN), pp 1–5. IEEE
3. Doakhan M, Kabganian M, Azimi A (2023) Cooperative payload transportation with real-time formation control of multi-quadrotors in the presence of uncertainty. J Frankl Inst 360(2):1284–1307
4. Wang S, Polyakov A, Zheng G (2022) Quadrotor stabilization under time and space constraints using implicit PID controller. J Frankl Inst 359(4):1505–1530
5. Demirhan M, Premachandra C (2020) Development of an automated camera-based drone landing system. IEEE Access 8:202111–202121
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