Home /Research /Scheduling to Minimize Downtime in Human-Multirobot Supervisory Control
OTHER

Scheduling to Minimize Downtime in Human-Multirobot Supervisory Control

Sandra Mau, John M. Dolan

Year
2018
Citations
15
Access
Open access

Abstract

This paper proposes the use of on-line scheduling in human telesupervision of robot teams to determine and maximize the number of robots a human operator can manage at once. To maximize the number of robots in a team, the double- Shifted Shortest Processing Time (dSSPT) algorithm was proposed for this purpose. This scheduling algorithm has the objective of minimizing total downtime (or flow time) for the group. Simulated experimental results show that dSSPT: 1) reduces downtime with respect to existing scheduling algorithms; and 2) increases the achievable spanof- control (i.e., the number of robots supervised) in a human-multirobot team compared to an existing method of prediction [3], especially as the variation in task lengths increases.

Keywords

DowntimeScheduling (production processes)RobotComputer scienceReal-time computingJob shop schedulingSupervisory controlDynamic priority schedulingDistributed computingEngineering

Related papers

Browse all OTHER papers