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Fractal trajectories for online non-uniform aerial coverage

Seyed Abbas Sadat, Jens Wawerla, Richard Vaughan

Year
2015
Citations
61

Abstract

We propose a novel method for non-uniform terrain coverage using Unmanned aerial vehicles (UAVs). The existing methods for coverage path planning consider a uniformly interesting target area and hence all the regions are covered with high resolution. However in many real world applications items of interest are not uniformly distributed but form patches of locally high interest. Therefore, with sparse sampling of uninteresting sections of the environment and high resolution sampling of interesting patches, the trajectory of the robot can become shorter. In this paper, we present a novel coverage strategy based on Space-Filling Curves that can accomplish non-uniform coverage of regions in the target area. Simulations and real robot experiments indicate that with the new strategy, travel time / cost of the task can be (almost) always less than a regular ‘lawnmower’ coverage pattern.

Keywords

Computer scienceMotion planningTrajectoryTerrainSampling (signal processing)FractalTask (project management)Path (computing)RobotComputer vision

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