首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part P. Journal of Sports Engineering and Technology >In-field measurement of vertical and horizontal forces in ski-jumping: Evaluation of a portable two-dimensional force plate
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In-field measurement of vertical and horizontal forces in ski-jumping: Evaluation of a portable two-dimensional force plate

机译:滑雪跳跃中垂直和水平力的现场测量:便携式二维力板的评估

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摘要

Various methods for measuring ground reaction forces during ski-jumping have been developed and applied. The main limitations of the current systems are the restriction to the measurement of single phases (parts of the in-run and take-off) and single force components (vertical component only). Therefore, the purpose of this study was to assess a recently developed force measurement system (JH-SJ), which records forces in the vertical (compression and tension) and horizontal (anterior and posterior) directions over the entire hill jumping sequence. Comparing the values between the JH-SJ and calibrated reference systems in a static and ski-jumping-specific condition provided a means of validating the use of JH-SJ. Hill jumps were performed to evaluate the system regarding the feasibility of application and plausibility of the obtained data. Mean absolute difference during static validity evaluation was 3.5?N (2.7%). Root mean square errors during ski-jumping-specific validity evaluation were less than 11.9?N. Vertical forces acted as compression during all phases of the hill jump except for the flight phase, when tension forces were also recorded. Horizontal force acted as friction on the system during in-run, take-off and landing. The small deviation of the measurement system compared to the reference systems suggests high validity of the JH-SJ measurement system. Qualitative analysis of the forces during hill jumps delivered plausible results for all phases, similar to previous studies. Based on this study, the JH-SJ system measures forces with a high degree of accuracy and precision in real conditions (hill jumps), while contributing new insights into ski-jumping kinetics.
机译:已经开发并施加了用于在滑雪跳跃过程中测量地面反作用力的各种方法。当前系统的主要局限性是限制对单阶段(运行和起飞部分的部分)和单个力量组件的测量(仅限垂直组件)。因此,本研究的目的是评估最近发达的力测量系统(JH-SJ),其在整个山跳序列中记录垂直(压缩和张力)和水平(前后和后部)方向的力。比较JH-SJ和校准参考系统之间的值在静态和滑雪跳跃的特定条件下提供了一种验证使用JH-SJ的方法。山跳进行了跳跃,以评估所获得的数据的应用和合理性的可行性。静态有效性评估期间的平均绝对差异为3.5?n(2.7%)。滑雪跳跃特定有效性评估期间的根均方误差小于11.9?n。在除了飞行阶段,垂直力在除了飞行阶段的山坡的所有阶段,垂直力呈压缩。在运行期间,水平力量充当系统摩擦,起飞和着陆。与参考系统相比测量系统的小偏差表明JH-SJ测量系统的有效性高。对山坡跳跃过程中力量的定性分析为所有阶段提供了合理的结果,类似于以前的研究。基于这项研究,JH-SJ系统以实际条件(Hill跳跃)的高精度和精确度的力量衡量力量,同时为滑雪跳跃动力学提供新的见解。

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