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keywords:(Internet of Flying Vehicles)

    Robotic Spacecraft Hopping: Application And Analysis

    K. P. Alsup | NTIS | 2018
    Schlagwörter: Unmanned vehicles , Equations of motion , Formation flying

    Evolution of Flying Qualities Analysis: Problems for a New Generation of Aircraft

    M. C. Cotting | NTIS | 2010
    Schlagwörter: Equations of motion , Uav(Unmanned aerial vehicles) , Flying qualities criteria , Flying qualities analysis , Manned flying qualities , Unmanned flying qualities , Nonlinear flying qualities

    Lunar Escape Systems (Less) Feasibility Study, Volume 2 Final Technical Report

    J. O. Matzenauer | NTIS | 1970
    Schlagwörter: Lunar flying vehicles , Equations of motion

    Usage of 5G in UAV Missions for ISR

    M. Leviton | NTIS | 2022
    Schlagwörter: Internet of things , Unmanned aerial vehicles

    Experimental Investigation of the Geometric Characteristics of Flapping-Wing Propulsion for a Micro Air Vehicle

    J. Papadopoulos | NTIS | 2003
    Schlagwörter: Remotely piloted vehicles , Angle of attack , Flying model

    Unmanned Combat Aerial Vehicles: A Close Air Support Alternative

    M. L. Bartley | NTIS | 2002
    Schlagwörter: Department of defense , Combat vehicles , Flying platforms

    Mini UAV's: Can Active Flow Control Do It All

    A. Seifert | NTIS | 2002
    Schlagwörter: Angle of incidence , Uav(Unmanned aerial vehicles) , Flying wings

    Fully Autonomous Vehicle-Borne Improvised Explosive Devices - Mitigating Strategies

    K. S. Knopf | NTIS | 2019
    Schlagwörter: Autonomous vehicles , Internet of things