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Robot Development and Path Planning for Indoor Ultraviolet Light Disinfection

Jonathan Conroy, Christopher Thierauf, Parker Rule, Evan Krause, Hugo A. Akitaya, Andrei Gonczi, Matias Korman, Matthias Scheutz

Year
2021
Citations
2

Abstract

Regular irradiation of indoor environments with ultraviolet C (UVC) light has become a regular task for many in-door settings as a result of COVID-19, but current robotic systems attempting to automate it suffer from high costs and inefficient irradiation. In this paper, we propose a purpose-made inexpensive robotic platform with off-the-shelf components and standard navigation software that, with a novel algorithm for finding optimal irradiation locations, addresses both shortcomings to offer affordable and efficient solutions for UVC irradiation. We demonstrate in simulations the efficacy of the algorithm and show a prototypical run of the autonomous integrated robotic system in an indoor environment. In our sample instances, our proposed algorithm reduces the time needed by roughly 30% while it increases the coverage by a factor of 35% (when compared to the best possible placement of a static light).

Keywords

Computer scienceRobotMotion planningReal-time computingSample (material)SoftwareTask (project management)Path (computing)IrradiationUltraviolet light

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