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Badminton Shuttlecock Detection and Prediction of Trajectory using Multiple 2 Dimensional Scanners

机译:使用多个二维扫描仪进行羽毛球羽毛球检测和预测轨迹

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This paper describes the use of two dimensional (2-D) laser scanner for locating badminton shuttlecock in real playing environment. It proposes a method to predict the end point of shuttlecock trajectory. The system is designed using two 2-D laser scanners to locate shuttlecock in midst of air in its trajectory. It helps to calculate shuttlecock's speed, orientation and hence, to predict an end point of its trajectory. This system acts as an intelligent feedback system to a badminton playing robot. The badminton playing robot requires enhanced and deterministic shuttlecock detection system for its accurate operations. The shuttlecock detection system can be implemented in designing of such badminton playing robots making the badminton sport more advanced as robots can be used to assist players in training programs. The paper deals with simulation and real experimental results obtained by two 2-D laser scanners to perform complex task of shuttlecock trajectory prediction. The physical implementation ensures minimum computational latency over traditional camera based shuttlecock detection methods. On field trials involved two scanners to locate shuttlecock at discrete time interval and promising results are obtained indicating such detection system with suitable modifications can be employed in shuttlecock trajectory prediction.
机译:本文介绍了二维(2-D)激光扫描仪的使用,用于在真实播放环境中定位羽毛球羽毛球。它提出了一种方法来预测Shuttlecock轨迹的终点。该系统使用两个2-D激光扫描仪设计,以在其轨迹中定位空气中的Shuttlecock。它有助于计算Shuttlecock的速度,方向,从而预测其轨迹的终点。该系统充当羽毛球播放机器人的智能反馈系统。羽毛球播放机器人需要增强和确定性的Shuttlecock检测系统,以获得其准确的操作。 Shuttlecock检测系统可以在设计这种羽毛球机器人的设计中实现,使羽毛球运动更先进,因为机器人可用于帮助培训计划中的玩家。本文涉及由两个2-D激光扫描仪获得的模拟和实际实验结果,以执行Shuttlecock轨迹预测的复杂任务。物理实现可确保基于传统的基于摄像机的Shuttlecock检测方法的最小计算延迟。在现场试验中,涉及两个扫描仪以定位离散时间间隔以分离的时间间隔定位和有希望的结果,指示具有合适的修改的这种检测系统可以在羽毛球轨迹预测中采用。

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