This paper presents a safe, efficient, and agile ground vehicle navigation algorithm for 3D off-road terrain environments. Off-road navigation is subject to uncertain vehicle-terrain interactions caused by different terrain conditions on top of 3D terrain topology. The existing works are limited to adopt overly simplified vehicle-terrain models. The proposed algorithm learns the terrain-induced uncertainties from driving data and encodes the learned uncertainty distribution into the traversability cost for path evaluation. The navigation path is then designed to optimize the uncertainty-aware traversability cost, resulting in a safe and agile vehicle maneuver. Assuring real-time execution, the algorithm is further implemented within parallel computation architecture running on Graphics Processing Units (GPU).
翻译:本文件为3D越野地形环境提供了一种安全、高效和灵活的地面车辆导航算法。越野导航受到3D地形地形地形表之外不同地形条件造成的车辆地形相互作用的不确定性的影响。现有工程仅限于采用过于简化的车辆地形模型。拟议的算法从驱动数据中学习地形引起的不确定性,并将所学的不确定性分布纳入路况评估的可穿行成本。然后,导航路径的设计将优化不确定性的可穿行成本,从而形成一种安全和灵活的机动车辆操作。保证实时执行,该算法将在图形处理股平行运行的计算结构中进一步实施。