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    张建婷, 刘晋浩, 黄青青, 隋婷婷. 仿山羊步态的林地底盘设计及仿真[J]. 北京林业大学学报, 2021, 43(6): 152-162. DOI: 10.12171/j.1000-1522.20210086
    引用本文: 张建婷, 刘晋浩, 黄青青, 隋婷婷. 仿山羊步态的林地底盘设计及仿真[J]. 北京林业大学学报, 2021, 43(6): 152-162. DOI: 10.12171/j.1000-1522.20210086
    Zhang Jianting, Liu Jinhao, Huang Qingqing, Sui Tingting. Design and simulation of woodland chassis imitating goat gait[J]. Journal of Beijing Forestry University, 2021, 43(6): 152-162. DOI: 10.12171/j.1000-1522.20210086
    Citation: Zhang Jianting, Liu Jinhao, Huang Qingqing, Sui Tingting. Design and simulation of woodland chassis imitating goat gait[J]. Journal of Beijing Forestry University, 2021, 43(6): 152-162. DOI: 10.12171/j.1000-1522.20210086

    仿山羊步态的林地底盘设计及仿真

    Design and simulation of woodland chassis imitating goat gait

    • 摘要:
        目的  我国林区地形较为复杂,林地底盘性能决定了林地装备能否“上山入林”,是林业现代化进程中需要解决的基础问题。相比轮式和履带式底盘,足式底盘腿部独立运动使得足式底盘在林区复杂地形环境中工作具有更强的灵活性和适应性。因此,研发针对我国林区环境的林地足式底盘对我国林业发展有重要意义。
        方法  针对林地底盘步态规划的研究,首先分析山羊一般的行进步态,得到行走迈步顺序、各关节角关系以及变化范围。设计一种林地底盘,对其左前腿结构简图进行运动学分析,利用蒙特卡洛方法计算底盘足端的工作空间,是否能满足要求。根据实际需求,确定林地底盘的步态和关节驱动,使用ADAMS仿真软件设计简化林地底盘虚拟样机模型,进行对角小跑步态仿真,通过林地底盘质心的位移和速度变化曲线分析林地底盘的运行性能。
        结果  平面运动的林地底盘质心在前进方向上位移变化稳定,前进速度0.2 m/s左右;底盘质心横向偏移程度较小,基本沿着设定轨迹前进;质心在竖直方向存在上下波动的情况,波动范围约占底盘总高度的1.04%,林地底盘在前进过程中没有发生跳跃情况或倾翻情况。
        结论  仿真结果表明,步态规划可以满足林地底盘的运动要求,可以提升林地底盘的运动稳定性和地形适应能力,安全可靠,适用于林业动力底盘。

       

      Abstract:
        Objective  The terrain of China’s forest region is more complex, and the performance of woodland chassis determines whether the forest equipment can go up the mountain into the forest, which is the basic problem to be solved in the process of forestry modernization. Compared with wheeled and crawler chassis, the leg independent motion of foot chassis makes foot chassis more flexible and adaptable in the complex terrain environment of forest region. Therefore, the research and development of forest foot chassis for China’s forest environment is of great significance to China’s forestry development.
        Method  In view of the study of gait planning of the forest floor, the general walking gait of goats was analyzed, and the walking step sequence, the relationship between the joint angles and the range of changes were obtained. A woodland chassis was designed, and the structure diagram of the left front leg was analyzed. The working space of the foot end of the chassis was calculated by Monte Carlo method, and whether it can meet the requirements. According to the actual needs, the gait and joint driving of the woodland chassis were determined. The virtual prototype model of the woodland chassis was designed and simplified by ADAMS simulation software. The simulation of the diagonal running gait was carried out. The running performance of the woodland chassis was analyzed by the displacement and speed curve of the mass center of the woodland chassis.
        Result  The movement of the mass center of the woodland chassis in the plane movement was stable in the forward direction, with the forward speed of about 0.2 m/s; the lateral displacement of the chassis mass center was relatively small, and basically advances along the set track; the center of mass fluctuates up and down in the vertical direction, and the fluctuation range accounted for about 1.04% of the total height of the chassis. There was no jumping or tilting of the woodland chassis during the forward process.
        Conclusion  The simulation results show that the gait planning can meet the motion requirements of the woodland chassis, improve the motion stability and terrain adaptability of the woodland chassis, and is safe and reliable, which is suitable for forestry power chassis.

       

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