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A Highly Miniaturized Wireless Inertial Measurement Unit for Characterizing the Dynamics of Pitched Baseballs and Softballs

机译:高度小型化的无线惯性测量装置用于表征俯仰棒球和垒球的动力学特性

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摘要

Baseball and softball pitch types are distinguished by the path and speed of the ball which, in turn, are determined by the angular velocity of the ball and the velocity of the ball center at the instant of release from the pitcher's hand. While radar guns and video-based motion capture (mocap) resolve ball speed, they provide little information about how the angular velocity of the ball and the velocity of the ball center develop and change during the throwing motion. Moreover, mocap requires measurements in a controlled lab environment and by a skilled technician. This study addresses these shortcomings by introducing a highly miniaturized, wireless inertial measurement unit (IMU) that is embedded in both baseballs and softballs. The resulting “ball-embedded” sensor resolves ball dynamics right on the field of play. Experimental results from ten pitches, five thrown by one softball pitcher and five by one baseball pitcher, demonstrate that this sensor technology can deduce the magnitude and direction of the ball's velocity at release to within 4.6% of measurements made using standard mocap. Moreover, the IMU directly measures the angular velocity of the ball, which further enables the analysis of different pitch types.
机译:棒球和垒球的俯仰类型由球的路径和速度来区分,而球的路径和速度又由球的角速度和从投手手中释放时的球中心速度决定。虽然雷达枪和基于视频的运动捕捉(mocap)可以解决球速,但它们几乎不提供有关在投掷运动期间球角速度和球心速度如何发展和变化的信息。此外,mocap要求在受控的实验室环境中由熟练的技术人员进行测量。本研究通过引入嵌入在棒球和垒球中的高度小型化的无线惯性测量单元(IMU)来解决这些缺点。最终的“嵌入式球”传感器可以在运动场上解决动态球问题。来自十个球场的实验结果(一个垒球投手投掷了五个,一个棒球投手投掷了五个)表明,该传感器技术可以将释放时球的速度大小和方向推算到使用标准Mocap测量值的4.6%之内。此外,IMU可直接测量球的角速度,从而进一步分析不同的螺距类型。

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