MK
M.M. Kemmeren
info
Please Note
<p>This page displays the records of the person named above and is not linked to a unique person identifier. This record may need to be merged to a profile.</p>
2 records found
1
As the application areas of Unmanned Aerial Vehicles (UAVs) keep expanding, new flight areas are encountered more often. Small UAVs, named Micro Air Vehicles (MAVs), even fly in areas like sewage pipes. These areas introduce new difficulties such as aerodynamic effects caused by the ground and/or ceiling. In this paper two main contributions are presented that deal with the aerodynamic effects caused by the ceiling: 1) an adaptive model describing the ceiling effect using onboard measurements, which can be altered to describe other aerodynamic effects that occur when flying in constrained spaces, 2) incorporating the adaptive model into an Incremental Nonlinear Dynamic Inversion (INDI) controller. The controller is implemented and tested onto a MAV (Crazyflie). The results have shown stability improvements for close ceiling flight. Moreover the minimal distance the MAV can fly from the ceiling is decreased using the new controller.
...
As the application areas of Unmanned Aerial Vehicles (UAVs) keep expanding, new flight areas are encountered more often. Small UAVs, named Micro Air Vehicles (MAVs), even fly in areas like sewage pipes. These areas introduce new difficulties such as aerodynamic effects caused by the ground and/or ceiling. In this paper two main contributions are presented that deal with the aerodynamic effects caused by the ceiling: 1) an adaptive model describing the ceiling effect using onboard measurements, which can be altered to describe other aerodynamic effects that occur when flying in constrained spaces, 2) incorporating the adaptive model into an Incremental Nonlinear Dynamic Inversion (INDI) controller. The controller is implemented and tested onto a MAV (Crazyflie). The results have shown stability improvements for close ceiling flight. Moreover the minimal distance the MAV can fly from the ceiling is decreased using the new controller.
Bachelor thesis
(2019)
-
E.B. van Baasbank, Edoardo Barbieri, João Bessa Da Cruz Pereira, Ioan Biraoanu-Aaei, B.J.V. Englebert, J.H. Farr, M.M. Kemmeren, A.P. Reijns, A. Schelfhout, D. Verkooij, C. de Wagter, Q. Ye, X. Li
In an effort to reduce the time, costs, and health hazards involved with the inspection of aircraft fuel tanks, Lockheed Martin has commissioned the design of an autonomous inspection drone for fuel tanks to DSE Group 05 at the Aerospace Engineering faculty, Delft University of Technology. This report entails the conceptual design process of the autonomous robotic tank inspection system - or ARTIS - that has been designed in this endeavor.
...
In an effort to reduce the time, costs, and health hazards involved with the inspection of aircraft fuel tanks, Lockheed Martin has commissioned the design of an autonomous inspection drone for fuel tanks to DSE Group 05 at the Aerospace Engineering faculty, Delft University of Technology. This report entails the conceptual design process of the autonomous robotic tank inspection system - or ARTIS - that has been designed in this endeavor.