Int J Sports Physiol Perform. 2019 Apr 1;14(4):432-438. doi: 10.1123/ijspp.2018-0273. Epub 2019 Feb 20.
To establish the interunit reliability of a range of global positioning system (GPS)-derived movement indicators, to determine the variation between manufacturers, and to investigate the difference between software-derived and raw data.
A range of movement variables were obtained from 27 GPS units from 3 manufacturers (GPSports EVO, 10 Hz, n = 10; STATSports Apex, 10 Hz, n = 10; and Catapult S5, 10 Hz, n = 7) that measured the same team-sport simulation session while positioned on a sled. The interunit reliability was determined using the coefficient of variation (%) and 90% confidence limits, whereas between-manufacturers comparisons and comparisons of software versus raw processed data were established using standardized effect sizes and 90% confidence limits.
The interunit reliability for both software and raw processed data ranged from good to poor (coefficient of variation = 0.2%; ±1.5% to 78.2%; ±1.5%), with distance, speed, and maximal speed exhibiting the best reliability. There were substantial differences between manufacturers, particularly for threshold-based acceleration and deceleration variables (effect sizes; ±90% confidence limits: -2.0; ±0.1 to 1.9; ±0.1), and there were substantial differences between data-processing methods for a range of movement indicators.
The interunit reliability of most movement indicators was deemed as good regardless of processing method, suggesting that practitioners can have confidence within systems. Standardized data-processing methods are recommended, due to the large differences between data outputs from various manufacturer-derived software.
确定一系列基于全球定位系统(GPS)的运动指标的单元间可靠性,确定制造商之间的差异,并研究软件派生数据与原始数据之间的差异。
从 3 个制造商(GPSports EVO,10 Hz,n=10;STATSports Apex,10 Hz,n=10;和 Catapult S5,10 Hz,n=7)的 27 个 GPS 单元中获取一系列运动变量,这些单元在 sled 上定位以测量相同的团队运动模拟。使用变异系数(%)和 90%置信区间来确定单元间可靠性,而制造商之间的比较和软件与原始处理数据之间的比较则使用标准化效应量和 90%置信区间来建立。
软件和原始处理数据的单元间可靠性从良好到较差不等(变异系数=0.2%;±1.5%至 78.2%;±1.5%),距离、速度和最大速度的可靠性最高。制造商之间存在显著差异,特别是基于阈值的加速和减速变量(效应量;±90%置信区间:-2.0;±0.1 至 1.9;±0.1),并且各种制造商的软件处理方法之间存在很大的差异对于一系列运动指标的数据。
无论处理方法如何,大多数运动指标的单元间可靠性均被认为是良好的,这表明从业者可以在系统内有信心。由于来自不同制造商的软件的数据输出之间存在很大差异,因此建议使用标准化的数据处理方法。