An aerial robot is a system capable of sustained flight with no
direct human control and able to perform a specific task. A lighter
than air robot is an aerial robot that relies on the static lift to
balance its own weight. It can also be defined as a lighter than
air unmanned aerial vehicle or an unmanned airship with sufficient
autonomy. Lighter than air systems are particularly appealing since
the energy to keep them airborne is small. They are increasingly
considered for various tasks such as monitoring, surveillance,
advertising, freight carrier, transportation.
This book familiarizes readers with a hierarchical decoupled
planning and control strategy that has been proven efficient
through research. It is made up of a hierarchy of modules with well
defined functions operating at a variety of rates, linked together
from top to bottom. The outer loop, closed periodically, consists
of a discrete search that produces a set of waypoints leading to
the goal while avoiding obstacles and weighed regions. The second
level smoothes this set so that the generated paths are feasible
given the vehicle's velocity and accelerations limits. The third
level generates flyable, timed trajectories and the last one is the
tracking controller that attempts to minimize the error between the
robot measured trajectory and the reference trajectory.
This hierarchy is reflected in thestructure and contentof the
book. Topics treated are: Modelling, Flight Planning, Trajectory
Design and Control. Finally, some actual projects are described in
the appendix. This volume will prove useful for researchers and
practitioners working in Robotics and Automation, Aerospace
Technology, Control and Artificial Intelligence.
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