Time-optimal path planning for underwater vehicles in obstacle constrained environments

Junnan Song, Shalabh Gupta, Thomas A. Wettergren · OCEANS 2017 – Anchorage · 2017

This paper addresses the time-optimal path planning problem for underwater vehicles in obstacle-constrained environments. It is assumed that the vehicles can move at variable speeds but their dynamics are subject to bounded curvature and turn rate. We present a novel pose-based search algorithm, which is a modified A∗ algorithm to find time-optimal paths between a given pair of vehicle poses including 2-D positions and orientations. The algorithm relies on an adaptive pruning technique for exploration in a high-dimensional configuration space consisting of vehicle poses. The proposed algorithm is validated by thorough simulations for different obstacle-constrained scenarios, and the results were compared with the Dubins paths. It is shown that the algorithm is computationally efficient and produced time-optimal paths which are significantly faster than the Dubins paths.

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