A multi-strategy pigeon-inspired optimization approach to active disturbance rejection control parameters tuning for vertical take-off and landing fixed-wing UAV
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Aerospace Engineering
Reference31 articles.
1. Trajectory tracking control for the flexible wings of a micro aerial vehicle;He;IEEE Trans Syst Man Cybern Syst,2018
2. Zaludin Z, Gires E. Automatic flight control requirements for transition flight phases when converting long endurance fixed wing UAV to VTOL aircraft. 2019 IEEE international conference on automatic control and intelligent Systems (I2CACIS); 2019 June 29-29; Selangor, Malaysia. Piscataway: IEEE Press;2019.p.273–8.
3. Hudati I, Rusdhianto Effendie AK, Jazidie A. Transition control on hybrid unmanned aerial vehicles (UAV) using altitude change. 2019 International seminar on intelligent technology and its applications (ISITIA); 2019 August 28-29;Surabaya, Indonesia. Piscataway: IEEE Press; 2019.p.276–81.
4. Transition characteristics for a small tail-sitter unmanned aerial vehicle;Zhong;Chin J Aeronaut,2021
5. Trajectory tracking control of a VTOL unmanned aerial vehicle using offset-free tracking MPC;Manzoor;Chin J Aeronaut,2020
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