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弹射ClearSky T6局部定位系统在室内条件下对团队运动特定训练的有效性。

Validity of the Catapult ClearSky T6 Local Positioning System for Team Sports Specific Drills, in Indoor Conditions.

作者信息

Luteberget Live S, Spencer Matt, Gilgien Matthias

机构信息

Department of Physical Performance, Norwegian School of Sport Sciences, Oslo, Norway.

出版信息

Front Physiol. 2018 Apr 4;9:115. doi: 10.3389/fphys.2018.00115. eCollection 2018.

Abstract

The aim of the present study was to determine the validity of position, distance traveled and instantaneous speed of team sport players as measured by a commercially available local positioning system (LPS) during indoor use. In addition, the study investigated how the placement of the field of play relative to the anchor nodes and walls of the building affected the validity of the system. The LPS (Catapult ClearSky T6, Catapult Sports, Australia) and the reference system [Qualisys Oqus, Qualisys AB, Sweden, (infra-red camera system)] were installed around the field of play to capture the athletes' motion. Athletes completed five tasks, all designed to imitate team-sports movements. The same protocol was completed in two sessions, one with an assumed optimal geometrical setup of the LPS (optimal condition), and once with a sub-optimal geometrical setup of the LPS (sub-optimal condition). Raw two-dimensional position data were extracted from both the LPS and the reference system for accuracy assessment. Position, distance and speed were compared. The mean difference between the LPS and reference system for all position estimations was 0.21 ± 0.13 m ( = 30,166) in the optimal setup, and 1.79 ± 7.61 m ( = 22,799) in the sub-optimal setup. The average difference in distance was below 2% for all tasks in the optimal condition, while it was below 30% in the sub-optimal condition. Instantaneous speed showed the largest differences between the LPS and reference system of all variables, both in the optimal (≥35%) and sub-optimal condition (≥74%). The differences between the LPS and reference system in instantaneous speed were speed dependent, showing increased differences with increasing speed. Measures of position, distance, and average speed from the LPS show low errors, and can be used confidently in time-motion analyses for indoor team sports. The calculation of instantaneous speed from LPS raw data is not valid. To enhance instantaneous speed calculation the application of appropriate filtering techniques to enhance the validity of such data should be investigated. For all measures, the placement of anchor nodes and the field of play relative to the walls of the building influence LPS output to a large degree.

摘要

本研究的目的是确定一款市售的局部定位系统(LPS)在室内使用时,对团队运动运动员的位置、移动距离和瞬时速度测量的有效性。此外,该研究还调查了比赛场地相对于建筑物锚节点和墙壁的位置如何影响系统的有效性。LPS(Catapult ClearSky T6,澳大利亚Catapult Sports公司)和参考系统[瑞典Qualisys AB公司的Qualisys Oqus(红外摄像系统)]安装在比赛场地周围,以捕捉运动员的运动。运动员完成了五项任务,所有任务均旨在模仿团队运动动作。在两个环节中完成相同的实验方案,一次是假设LPS具有最佳几何设置(最佳条件),另一次是LPS具有次优几何设置(次优条件)。从LPS和参考系统中提取原始二维位置数据进行准确性评估。比较了位置、距离和速度。在最佳设置下,LPS和参考系统在所有位置估计上的平均差异为0.21±0.13米(n = 30166),在次优设置下为1.79±7.61米(n = 22799)。在最佳条件下,所有任务的距离平均差异低于2%,而在次优条件下低于30%。在所有变量中,瞬时速度在LPS和参考系统之间的差异最大,在最佳条件下(≥35%)和次优条件下(≥74%)均如此。LPS和参考系统在瞬时速度上的差异与速度有关,随着速度增加差异增大。LPS测量的位置、距离和平均速度误差较小,可放心用于室内团队运动的时间动作分析。根据LPS原始数据计算瞬时速度无效。为提高瞬时速度计算的有效性,应研究应用适当的滤波技术来增强此类数据的有效性。对于所有测量,锚节点的位置以及比赛场地相对于建筑物墙壁的位置在很大程度上影响LPS输出。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7ea/5893723/0d29598cbfdc/fphys-09-00115-g0001.jpg

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