arXiv:2501.06115cs.ROcs.SY2025-01

为拖车倒车设计智能辅助系统,提升驾驶直观性。

Development of an Advisory System for Parking of a Car and Trailer

  • 基于车辆-拖车运动学模型,构建逆向虚拟转向指令。
  • 实时生成可视化图形,预示拖车在当前状态下的轨迹。
  • 适合新手司机或复杂场景下拖车倒车操作者使用。

拖车倒车因车辆-拖车系统在倒车时的不稳定性以及难以理解的转向操作而极具挑战性。本文提出一种策略,通过图形化辅助系统帮助驾驶员手动完成车辆-拖车倒车操作。建立低速运动的车辆-拖车动力学模型,并通过生成等效虚拟拖车轴转向指令来求解其逆运动学。基于逆运动学生成的辅助图形,可显示在当前车辆转向角和连接角度(hitch angle)下预期的拖车朝向。通过仿真与动画测试该方法的有效性,用户可自由选择车速与转向角,随时停止系统并尝试不同转向输入,观察其对预测拖车运动的影响,再选择最优操作,从而实现一系列分段连续的控制动作,模拟实际手动倒车过程。实验表明,该辅助图形能有效帮助驾驶员直观理解任意配置下的拖车运动行为。

原文摘要 · Abstract (English)

Trailer parking is a challenging task due to the unstable nature of the vehicle-trailer system in reverse motion and the unintuitive steering actions required at the vehicle to accomplish the parking maneuver. This paper presents a strategy to tackle this kind of maneuver with an advisory graphic aid to help the human driver with the task of manually backing up the vehicle-trailer system. A kinematic vehicle-trailer model is derived to describe the low-speed motion of the vehicle-trailer system, and its inverse kinematics is established by generating an equivalent virtual trailer axle steering command. The advisory system graphics is generated based on the inverse kinematics and displays the expected trailer orientation given the current vehicle steer angle and configuration (hitch angle). Simulation study and animation are set up to test the efficacy of the approach, where the user can select both vehicle speed and vehicle steering angle freely, which allows the user to stop the vehicle-trailer system and experiment with different steering inputs to see their effect on the predicted trailer motion before proceeding with the best one according to the advisory graphics, hence creating a series of piecewise continuous control actions similar to how manual trailer reverse parking is usually carried out. The advisory graphics proves to provide the driver with an intuitive understanding of the trailer motion at any given configuration (hitch angle).

自动驾驶辅助系统运动规划

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