Research on the Motion of Bench ‘Dragon Based’ on Isometric Spiral Model

Authors

  • Jingwen Gao
  • Haolin Shi

DOI:

https://doi.org/10.54097/2xdk8906

Keywords:

Collision model, Spiral motion, Bench dragon.

Abstract

"Bench Dragon" is a traditional local folk activity in Zhejiang and Fujian regions of China. When the activity is held, hundreds of benches are connected end to end and rotated, which is visually spectacular and rhythmical. This paper aims to use mathematical methods to reveal the internal operation law of "Bench dragon", find out the possible collision problems of "Bench dragon", establish a simulation model, predict the possible collision time and the position and speed of each part at the collision moment. At present, there is no complete and reliable research in this field. Firstly, the formula for calculating the position and velocity of each part in the process of "Benching dragon" movement is summarized, and the collision time is obtained by combining the collision model, and the position and velocity of each part at the collision moment is deduced. In order to verify the reliability of the model established in this paper, a set of initial data is brought in for simulation output, and the results show that the reliability of the collision model established in this paper is good.

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References

[1] Zhai Jinfeng. Research on Virtual crowd path planning based on deep reinforcement learning [D]. Southeast University, 2020.

[2] Wang Shuqi, Li Zhirui. Satellite-based circularly polarized planar sinusoidal Archimedean spiral antenna [C]// Radio Wave Propagation Branch of the Chinese Society of Electronics. Proceedings of the 17th National Radio Wave Communication Conference. Xi 'a University of Science and Technology, 2022: 4.

[3] Zhang Enhui, Ren Shichao, Zhao Changrong. Design and Research of Archimedes Spiral Deformation Wheel [J]. Mechanical Transmission, 2024, 48 (10), 68 - 74.

[4] Su Teng hui. Research on Simulation algorithm of crowd motion state in multi-context [D]. Beijing University of Posts and Telecommunications, 2020.

[5] Xie Kaili. Research and Implementation of Collision Avoidance in Large-scale Crowd Simulation [J]. Modern Computer (Pro), 2019, (01): 67 - 71.

[6] Chen Zheng. Design and Implementation of Motion detection and target tracking Module in Intelligent monitoring system [D]. Harbin Institute of Technology, 2020.

[7] Liu Chongjun. Principle and Calculation of isometric spiral [J]. Mathematical Practice and Understanding, 2018, 48: (11).

[8] Chen Yan, Wang Wei. Velocity and acceleration of particle moving along logarithmic spiral [J]. Journal of Yangzhou Vocational University, 2023, 27 (02), 54 - 57.

[9] Kang Quanjie, Yan Wenxing. Research on Collision Detection of Industrial robot with unknown model [J]. Mechatronics Development and Innovation, 2024, 37 (06), 104 - 106.

[10] Zheng Jin, Jiang Dongxue. Classification and Analysis of Kinematics Problems related to "isogonal spiral" [J]. Physics Teaching, 2023, 45 (06), 56 - 60.

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Published

18-05-2025

How to Cite

Gao, J., & Shi, H. (2025). Research on the Motion of Bench ‘Dragon Based’ on Isometric Spiral Model. Highlights in Science, Engineering and Technology, 142, 166-173. https://doi.org/10.54097/2xdk8906