改进的S曲线时间最优点到点多轴同步算法
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北京无线电计量测试研究所 北京 100854

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TP249

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Time-optimal point-to-point multi-axis synchronization algorithm based on improved S-curve
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Beijing Institute of Radio Metrology and Measurement,Beijing 100854, China

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    摘要:

    针对传统S曲线模型存在的加加速度值不连续从而影响设备精度和使用寿命的问题,提出了一种新的轨迹规划及多轴同步算法。首先,采用分段三角函数构造了一种无限可微的15段加加速度模型,在此基础上插补出满足运动学约束的点到点时间最优轨迹,最终推导得到最小速度下的点到点多轴同步算法的参数化表达。该方法计算简单且能够得到解析解,同时可以保证生成的曲线平滑无冲击。仿真实验表明,所提出的方法与传统S曲线相比,总规划时间增加不超过5%的同时可生成连续平滑的轨迹,验证了所提出方法的正确性和有效性。

    Abstract:

    Aiming at the problem that the jerk value is discontinuous in the traditional S-curve model, which affects the accuracy and service life of the equipment, a new trajectory planning and multi-axis synchronization algorithm are proposed. Firstly, an infinitely differentiable 15-segment jerk model is constructed based on the piecewise trigonometric function, then the time-optimal point-to-point trajectory satisfying the kinematic constraints is interpolated, and finally, the parametric expression of point-to-point multi-axis synchronization algorithm with minimum velocity is derived. The method is simple to calculate and can obtain analytical solutions, and at the same time, it can ensure that the generated curve is smooth. The simulation show that the proposed method can generate continuous smooth trajectories while increasing the total planning time by less than 5% compared with the conventional S-curve. Therefore, the correctness and effectiveness of the proposed method are verified.

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王新达,孙祥溪,吴翔,常慧娟,张健.改进的S曲线时间最优点到点多轴同步算法[J].电子测量技术,2023,46(21):93-99

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  • 在线发布日期: 2024-03-04
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