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Field trials of an energy-aware mission planner implemented on an autonomous surface vehicle

机译:在自主地面车辆上实施的能量感知任务计划员的现场试验

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摘要

Mission planning for autonomous marine vehicles is nontrivial due to the dynamic and uncertain nature of the marine environment. Communication can be low-bandwidth and is not always guaranteed, so the operator must rely on the vehicles to adjust their plans according to the realized state of the environment. This paper presents the improvements made to an energy-aware mission planner that allows it to generate and adjust plans for an autonomous surface vehicle (ASV) operating in an uncertain environment The energy-aware mission planning problem was redefined as a stochastic programming problem, and a two-stage solver was developed to provide an initial plan for the ASV and then adjust it during run-time according to predefined recourse actions. The mission planner and ASV were trialed in Lake Waverley, Tasmania. Adjusting the recourse action criteria demonstrated that the ASV could exhibit conservative or opportunistic behaviors according to the operator's preference of safety margin. In the pursuit of extending the planner's second-stage so that it can predict a suitable recourse action ahead of time, a hybrid long short-term memory energy forecaster was trained from the Waverley mission data. Comparison of the error between the forecaster and the test data shows that the forecaster has a reliable forecast horizon of about 10 s.
机译:由于海洋环境的动态和不确定性质,自主船用车的任务规划是非竞争。通信可以是低带宽,并且并不总是保证,因此操作员必须依赖车辆根据环境的实现状态调整他们的计划。本文提出了对能源意识的任务计划的改进,使其能够在不确定的环境中运行的自主表面车辆(ASV)的制定和调整能量感知的使命规划问题被重新定义为随机编程问题,以及开发了一种两级解算器,为ASV提供初始计划,然后根据预定义的追索行动在运行期间调整它。任务计划和ASV在塔斯马尼亚湖Waverley试验。调整追索权标准证明,ASV可以根据操作员的安全保证金的偏好表现出保守或机会主义行为。在追求延长策划者的第二阶段,使其可以提前预测适当的追索行动,从Waverley使命数据训练了混合长期短期记忆能源预测员。预测和测试数据之间的误差比较显示,预测员具有约10秒的可靠预测地平线。

著录项

  • 来源
    《Journal of Robotic Systems》 |2020年第6期|1040-1062|共23页
  • 作者单位

    Section for Oceans and Arctic Technical University of Denmark Lyngby Denmark;

    Automation and Control Technical University of Denmark Lyngby Denmark;

    National Centre for Maritime Engineering and Hydrodynamics University of Tasmania Newnham Tasmania Australia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    marine robotics; planning;

    机译:海洋机器人;规划;

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