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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part P. Journal of Sports Engineering and Technology >Within-field variability of turfgrass surface properties and athlete performance: Modeling their relationship using GPS and GIS technologies
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Within-field variability of turfgrass surface properties and athlete performance: Modeling their relationship using GPS and GIS technologies

机译:地射面特性和运动员性能的现场内变异性:使用GPS和GIS技术建模他们的关系

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摘要

Surface properties of turfgrass athletic fields exhibit within-field variability. Wearable global positioning system athlete performance tracking units allow for the investigation of field impact on athlete performance. The purpose of this technical note is to present a case study introducing a methodology to model the effect of within-field variability on athlete performance using global positioning system and geographic information system technologies. Fifteen male collegiate club rugby athletes wore a global positioning system unit (10 Hz frequency sampling locational data) during two home games. Only athlete speed (m/s) was considered because measurements were georeferenced. Soil moisture, soil compaction, turfgrass quality, and surface hardness measurements were taken and georeferenced from the field prior to the games. The field's boundary was digitized in a geographic information system and divided into 3 m(2) grid cells. Georeferenced data were imported to the geographic information system and underwent processes to calculate the team's weighted mean speed and surface property variability scores in each grid cell for both games. Linear regressions were conducted with the data sets to determine the effect of within-field variability on team mean speed. Depending on the game, within-field variability of each measured surface property, as well as a few interactions, did significantly influence team speed. Future larger-scale studies can build upon the reported methodology to further investigate and validate these types of relationships. Coaches, trainers, athletes, and field managers could use this information to prepare for, or manage, turfgrass athletic fields in a way that better meets expectations and maximizes performance.
机译:草坪草运动场的表面特性呈现出现场变异性。可穿戴的全球定位系统运动员性能跟踪单位允许对运动员性能的田间影响调查。本技术说明的目的是展示一种案例研究,介绍了一种使用全球定位系统和地理信息系统技术模拟现场变异性效果的方法。十五名男大学俱乐部橄榄球运动员在两个家庭游戏中穿过全球定位系统单元(10 Hz频率采样位置数据)。仅考虑运动员速度(m / s),因为测量是奇观的。土壤湿度,土壤压实,草坪草质量和表面硬度测量和从游戏前的场地啮合。该领域的边界在地理信息系统中数字化,并分为3米(2)个网格单元。地理位理数据被导入到地理信息系统和接受过程中的过程,以计算两种GROES的每个网格单元中的团队的加权平均速度和表面属性变异分数。用数据集进行线性回归,以确定现场变异性对团队均值速度的影响。根据游戏,每个测量的表面属性以及几个相互作用的场内变异性显着影响团队速度。未来的大规模研究可以建立在报告的方法上,以进一步调查和验证这些类型的关系。教练,培训师,运动员和现场经理可以使用这些信息来准备或管理草坪运动领域,以便更好地满足预期并最大化性能。

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