Dynamic Simulation of Spiral Motion in The Bench Dragon Dance Based on The SAT Algorithm
DOI:
https://doi.org/10.54097/bmfeqt37Keywords:
Bench Dragon Dance, Collision Detection, Spiral Motion, Dynamic Simulation.Abstract
The Bench Dragon is a traditional folk cultural performance prevalent in the Zhejiang and Fujian regions of China. This study resolves the quantification problems of the positions and velocities of each part during the performance of the dragon dance team and the collision detection problem during the marching process. This paper established the position-velocity calculation model based on the equation of the equidistant helical curve and the binary search algorithm, as well as the collision detection model based on the SAT algorithm. Through continuous iteration, traversal, and optimization, this study ultimately obtained the position coordinates and velocity values of each part of the bench dragon per second, and detected that in the context of this study, the dragon head would collide with the ninth bench at the 412.5th second. This research can not only provide scientific references for the performances of the dragon dance team but also lay a model foundation for studying the issues of the team's turning and path planning.
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