论文标题
基于双摆系统的Astrojax双球轨迹的研究和实验设计
Research and experimental design of Astrojax double balls trajectory based on double pendulum system
论文作者
论文摘要
基于双摆和拉格朗日方程,移动粒子由双眼三维捕获摄像头捕获。建立了两个星空的轨迹模型以及轨迹经验公式与参数之间的关系。通过研究,该公式和相关参数的计算轨迹与实际测得的轨迹非常吻合,并且可以准确预测和更改模型的轨迹。实验中所需的设备和材料很容易获得,实验主题相对有趣且新颖,可以用作大学物理实验课程的扩展实验,以便学生可以理解双摆的运动特征并从生活中学习物理学。设计实验不仅可以改善学生对学习的兴趣,而且可以扩大知识并培养他们的实际能力。
Based on the double pendulum and Lagrange equation, the moving particles are captured by a binocular three-dimensional capture camera. Two trajectory models of Astrojax and the relationship between trajectory empirical formula and parameters are established. Through research, the calculated trajectory of this formula and related parameters fit well with the actual measured trajectory, and can accurately predict and change the trajectory of the model. The equipment and materials required in the experiment are simple and easy to obtain, and the experimental theme is relatively interesting and novel, which can be applied as an extended experiment in college physics experiment course, so that students can understand the motion characteristics of the double pendulum and learn physics from life. The designing experiment can not only improve students' interest in learning, but also broaden their knowledge and cultivate their practical ability.