Design and Experimental Validation of an Adaptive Landing Gear for Safe Landing on Uneven Grounds of VTOL UAVs in the Context of Lightweight and Fast Adaptations
暂无分享,去创建一个
[1] Dan Zhang,et al. A method for comprehensive performance optimization of four-leg landing gear based on the virtual equivalent parallel mechanism , 2022, Mechanism and Machine Theory.
[2] Sajad Haghzad Klidbary,et al. Development of a Novel Wheeled Parallel Robot with Six Degrees of Freedom , 2022, The Arabian journal for science and engineering.
[3] Debika Debnath,et al. Position control of a DC servo motor using various controllers: A comparative study , 2022, Materials Today: Proceedings.
[4] Nihat Çabuk. Design and Kinematic Analysis of Proposed Adaptive Landing Gear for Multirotor UAV , 2021, El-Cezeri Fen ve Mühendislik Dergisi.
[5] Ş. Yıldırım,et al. Experimental comparison of the effect of the number of redundant rotors on the fault tolerance performance for the proposed multilayer UAV , 2021, Robotics Auton. Syst..
[6] Filipe Marques,et al. An investigation of a novel LuGre-based friction force model , 2021 .
[7] Kazuhiro Shimonomura,et al. A Versatile Aerial Manipulator Design and Realization of UAV Take-Off from a Rocking Unstable Surface , 2021, Applied Sciences.
[8] Ş. Yıldırım,et al. Design, Modelling and Control of an Eight-Rotors UAV with Asymmetric Configuration for Use in Remote Sensing Systems , 2021, Journal of Aviation.
[9] Dan Zhang,et al. A multi-finger robot system for adaptive landing gear and aerial manipulation , 2021, Robotics Auton. Syst..
[10] Donghun Cheon,et al. Robust Landing Control of a Quadcopter on a Slanted Surface , 2021, International Journal of Precision Engineering and Manufacturing.
[11] Martin Saska,et al. Collision-free trajectory planning of multi-rotor UAVs in a wind condition based on modified potential field , 2021 .
[12] Robert Ladig,et al. TAMS: development of a multipurpose three-arm aerial manipulator system , 2021, Adv. Robotics.
[13] Guilherme V. Raffo,et al. A new robust adaptive mixing control for trajectory tracking with improved forward flight of a tilt-rotor UAV. , 2020, ISA transactions.
[14] Baohua Zhang,et al. State-of-the-art robotic grippers, grasping and control strategies, as well as their applications in agricultural robots: A review , 2020, Comput. Electron. Agric..
[15] Şahin Yildirim,et al. ALTI ROTORLU VE SEKİZ ROTORLU İNSANSIZ HAVA ARAÇLARININ FARKLI BOZUCU ETKİ ALTINDA UÇUŞ PERFORMANSLARININ KARŞILAŞTIRILMASI , 2020, Konya Journal of Engineering Sciences.
[16] Dzmitry Tsetserukou,et al. LocoGear: Locomotion Analysis of Robotic Landing Gear for Multicopters , 2020, IEEE Journal on Miniaturization for Air and Space Systems.
[17] Dan Zhang,et al. Control System for Vertical Take-Off and Landing Vehicle’s Adaptive Landing Based on Multi-Sensor Data Fusion , 2020, Sensors.
[18] Aminurrashid Noordin,et al. Adaptive PID Controller Using Sliding Mode Control Approaches for Quadrotor UAV Attitude and Position Stabilization , 2020, Arabian Journal for Science and Engineering.
[19] Şahin Yildirim,et al. Modelling and Control of Proposed Two Dodecacopter Systems , 2020, International Journal of Applied Mathematics Electronics and Computers.
[20] Mário Sarcinelli Filho,et al. A Survey on Load Transportation Using Multirotor UAVs , 2019, Journal of Intelligent & Robotic Systems.
[21] Anibal Ollero,et al. Accurate control of Aerial Manipulators outdoors. A reliable and self-coordinated nonlinear approach , 2020 .
[22] Roger Miranda-Colorado,et al. Robust PID control of quadrotors with power reduction analysis. , 2020, ISA transactions.
[23] Hussain Alzaher,et al. An All-Digital Low-Noise Switching DC–DC Buck Converter Based on a Multi-sampling Frequency Delta-Sigma Modulation with Enhanced Light-Load Efficiency , 2020, Arabian Journal for Science and Engineering.
[24] Şahin Yildirim,et al. Design and trajectory control of universal drone system , 2019 .
[25] Paul M. Nadan,et al. A Bird-Inspired Perching Landing Gear System1 , 2019, Journal of Mechanisms and Robotics.
[26] Qingmin Liao,et al. A methodology for modeling and simulating frictional translational clearance joint in multibody systems including a flexible slider part , 2019 .
[27] Leijian Yu,et al. A Neural Network Based Landing Method for an Unmanned Aerial Vehicle with Soft Landing Gears , 2019, Applied Sciences.
[28] Tao Wang,et al. Dual-arm cooperation and implementing for robotic harvesting tomato using binocular vision , 2019, Robotics Auton. Syst..
[29] Tuğrul Oktay,et al. Dynamic Modeling and Simulation of Quadcopter for Several Flight Conditions , 2019 .
[30] Danica Kragic,et al. Perching and resting—A paradigm for UAV maneuvering with modularized landing gears , 2019, Science Robotics.
[31] Farrokh Janabi-Sharifi,et al. Aerial manipulation - A literature survey , 2018, Robotics Auton. Syst..
[32] Kjeld Jensen,et al. A survey of Open-Source UAV flight controllers and flight simulators , 2018, Microprocess. Microsystems.
[33] Huu Khoa Tran,et al. Flight Motion Controller Design using Genetic Algorithm for a Quadcopter , 2018 .
[34] Ergun Erçelebi,et al. Modelling and Genetic Algorithm Based-PID Control of H-Shaped Racing Quadcopter , 2017 .
[35] Dan Zhang,et al. An Approach for Modeling and Performance Analysis of Three-Leg Landing Gear Mechanisms Based on the Virtual Equivalent Parallel Mechanism , 2022, Mechanism and Machine Theory.
[36] Fujun Wang,et al. A novel friction-actuated 2-DOF high precision positioning stage with hybrid decoupling structure , 2022 .
[37] Dan Zhang,et al. Design of a class of generalized parallel mechanisms for adaptive landing and aerial manipulation , 2022, Mechanism and Machine Theory.
[38] Masatoshi Ishikawa,et al. Stabilization System for UAV Landing on Rough Ground by Adaptive 3D Sensing and High-Speed Landing Gear Adjustment , 2021, J. Robotics Mechatronics.