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Accuracy of a 10 Hz GPS Unit in Measuring Shuttle Velocity Performed at Different Speeds and Distances (5 – 20 M)

机译:10 Hz GPS装置在不同速度和距离(5 – 20 M)下执行的梭速测量中的精度

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摘要

The aim of this study was to validate the accuracy of a 10 Hz GPS device (STATSports, Ireland) by comparing the instantaneous values of velocity determined with this device with those determined by kinematic (video) analysis (25 Hz). Ten male soccer players were required to perform shuttle runs (with 180° change of direction) at three velocities (slow: 2.2 m·s-1; moderate: 3.2 m·s-1; high: maximal) over four distances: 5, 10, 15 and 20 m. The experiments were video-recorded; the “point by point” values of speed recorded by the GPS device were manually downloaded and analysed in the same way as the “frame by frame” values of horizontal speed as obtained by video analysis. The obtained results indicated that shuttle distance was smaller in GPS than video analysis (p < 0.01). Shuttle velocity (shuttle distance/shuttle time) was thus smaller in GPS than in video analysis (p < 0.001); the percentage difference (bias, %) in shuttle velocity between methods was found to decrease with the distance covered (5 m: 9 ± 6%; 20 m: 3 ± 3%). The instantaneous values of speed were averaged; from these data and from data of shuttle time, the distance covered was recalculated; the error (criterion distance-recalculated distance) was negligible for video data (0.04 ± 0.28 m) whereas GPS data underestimated criterion distance (0.31 ± 0.55 m). In conclusion, the inaccuracy of this GPS unit in determining shuttle speed can be attributed to inaccuracy in determining the shuttle distance.
机译:这项研究的目的是通过将用此设备确定的瞬时速度值与通过运动学(视频)分析确定的瞬时速度值(25 Hz)进行比较,来验证10 Hz GPS设备(STATSports,爱尔兰)的准确性。需要十名男性足球运动员以三种速度(慢:2.2 m·s -1 ;中等:3.2 m·s -1 < / sup>;高:最大)跨越四个距离:5、10、15和20 m。实验是录像的。与通过视频分析获得的水平速度的“逐帧”值相同,手动下载并分析了GPS设备记录的“逐点”速度值。获得的结果表明,GPS中的穿梭距离小于视频分析(p <0.01)。因此,GPS中的穿梭速度(穿梭距离/穿梭时间)小于视频分析中的穿梭速度(p <0.001);两种方法之间的穿梭速度百分比差异(偏差,%)随覆盖距离的增加而减小(5 m:9±6%; 20 m:3±3%)。速度瞬时值取平均值;根据这些数据和往返时间的数据,重新计算了覆盖距离;视频数据(0.04±0.28 m)的误差(标准距离重新计算的距离)可以忽略不计,而GPS数据低估了标准距离(0.31±0.55 m)。总之,该GPS单元在确定穿梭​​速度方面的不准确性可以归因于在确定穿梭​​距离方面的不准确。

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