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A Study of Automatic and Real-Time Table Tennis Fault Serve Detection System

机译:自动实时乒乓球故障服务检测系统的研究

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摘要

Calling a table tennis fault serve has never been easy for umpires, since they can only rely on their intuition. This study presents an algorithm that is able to automatically find the positions of the ball and racket in the images captured by high-speed camera. The trajectory of ball toss is analyzed and the result can be used as the objective basis for the umpire to decide if the serve is legal. This algorithm mainly consists of YCbCr color space processing, morphological processing method, circle Hough transform application, separation of moving and static components in an image sequence using the stable principal component pursuit method. The experiment results show that YCbCr color space provides better performance than HSV color space in recognizing the ball color close to skin tone. It is also demonstrated that the positions of the ball and racket can be successfully located by using the methods of color segmentation and stable principal component pursuit. Lastly, it is hoped that this study will provide more useful information regarding how to identify illegal ball toss in tennis ball game using image processing techniques to other researchers.
机译:对于裁判员来说,打电话给乒乓球故障发球从来都不是一件容易的事,因为他们只能依靠自己的直觉。这项研究提出了一种算法,该算法能够自动找到高速相机捕获的图像中球和球拍的位置。分析了抛球的轨迹,其结果可作为裁判员判定发球是否合法的客观依据。该算法主要包括YCbCr颜色空间处理,形态学处理方法,圆霍夫变换应用,使用稳定主成分追踪方法分离图像序列中的动和静态成分。实验结果表明,YCbCr颜色空间在识别接近肤色的球色方面比HSV颜色空间具有更好的性能。还证明了通过使用颜色分割和稳定的主成分追踪方法可以成功地定位球和球拍的位置。最后,希望这项研究将为其他研究人员提供有关如何使用图像处理技术在网球比赛中识别非法抛球的更多有用信息。

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