Publication | Closed Access
Optimal path planning under temporal logic constraints
41
Citations
18
References
2010
Year
Unknown Venue
Artificial IntelligenceEngineeringOptimal Robot TrajectoryIntelligent SystemsTrajectory PlanningOptimal Robot TrajectoriesNetwork RoboticsSystems EngineeringTemporal LogicRobot LearningCombinatorial OptimizationPath PlanningComputer ScienceAi PlanningOptimal PathRoute PlanningAutomationFormal MethodsRoboticsRobot Trajectory
In this paper we present a method for automatically generating optimal robot trajectories satisfying high level mission specifications. The motion of the robot in the environment is modeled as a weighted transition system. The mission is specified by a general linear temporal logic formula. In addition, we require that an optimizing proposition must be repeatedly satisfied. The cost function that we seek to minimize is the maximum time between satisfying instances of the optimizing proposition. For every environment model, and for every formula, our method computes a robot trajectory which minimizes the cost function. The problem is motivated by robotic monitoring and data gathering. In this setting, the optimizing proposition is satisfied at locations where data can be uploaded, and the formula specifies a an infinite horizon data collection mission. Our method utilizes Büchi automata to produce an automaton (which can be thought of as a graph) whose runs satisfy the temporal logic formula. We then present a graph algorithm which computes a path corresponding to the optimal robot trajectory. We also present an implementation for a robot performing a data gathering mission.
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