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ALGORITHMS FOR TENNIS RACKET ANALYSIS BASED ON MOTION DATA

机译:基于运动数据的网球拍分析算法

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Modern technologies, such as motion capture systems (both optical and markerless), are more and more frequently used for athlete performance analysis due to their great precision. Optical systems based on the retro-reflective markers allow for tracking motion of multiple objects of various types. These systems compute human kinetic and kinematic parameters based on biomechanical models. Tracking additional objects like a tennis racket is also a very important aspect for analysing the player’s technique and precision. The motion data gathered by motion capture systems may be used for analysing various aspects that may not be recognised by the human eye or a video camera. This paper presents algorithms for analysis of a tennis racket motion during two of the most important tennis strokes: forehand and backhand. An optical Vicon system was used for obtaining the motion data which was the input for the algorithms. They indicate: the velocity of a tennis racket’s head and the racket’s handle based on the trajectories of attached markers as well as the racket’s orientation. The algorithms were implemented and tested on the data obtained from a professional trainer who participated in the research and performed a series of ten strikes, separately for: 1) forehand without a ball, 2) backhand without a ball, 3) forehand with a ball and 4) backhand with a ball. The computed parameters are gathered in tables and visualised in a graph.
机译:诸如运动捕捉系统(光学和无标记)之类的现代技术因其极高的精度而越来越多地用于运动员的成绩分析。基于回射标记的光学系统可跟踪各种类型的多个物体的运动。这些系统基于生物力学模型计算人体动力学和运动学参数。跟踪网球拍等其他物体也是分析球员的技术和准确性的重要方面。由运动捕捉系统收集的运动数据可以用于分析人眼或摄像机可能无法识别的各个方面。本文介绍了用于分析两个最重要的网球拍(正手和反手)中的网球拍运动的算法。使用光学Vicon系统获取运动数据,该数据是算法的输入。它们指示:根据附加标记的轨迹以及球拍的方向,网球拍的头部和球拍的手柄的速度。该算法是根据参加该研究的专业培训师的数据进行实施和测试的,该培训师进行了十次打击,分别针对:1)正手无球,2)反手无球,3)正手有球和4)用球反手。计算出的参数收集在表格中并在图形中可视化。

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