Office of Physical Education, National Ping-Tung University of Science and Technology, Neipu 912, Pingtung County, Taiwan.
Department of Biomechatronics Engineering, National Ping-Tung University of Science and Technology, Neipu 912, Pingtung County, Taiwan.
Sensors (Basel). 2020 Nov 28;20(23):6808. doi: 10.3390/s20236808.
The two aims of this study were (1) designing and developing an affordable visual reaction system for badminton training that monitors and provides instant feedback on agility; and (2) to measure and improve the footwork and movement of badminton players and output useful reference data. Ten junior high school badminton players were invited to serve as the subjects of this study. They participated in a three-week (nine sessions) training program. Training was primarily in the form of fixed or random footwork drills. Timed tests were performed before and after each session to measure the players' agility in performing six-point and four-point footwork drills. The results were compared to the training effects calculated using dependent-sample -tests. In addition, the long-term durability and functionality of the training system were tested. The training system was able to maintain stable and reliable training and evaluation operations for extended periods. Results showed significant improvements in the visual reaction time ( = 0.003) and agility ( = 0.001) of players. The proposed training system is an affordable option for training and monitoring, evaluating, and recording training performance. It can accurately record movement and response times and simulate competitive environments.
(1)设计和开发一种经济实惠的羽毛球训练视觉反应系统,用于监测和即时反馈敏捷性;(2)测量和提高羽毛球运动员的脚步动作和移动能力,并输出有用的参考数据。邀请了 10 名初中生作为本研究的受试者。他们参加了为期三周(九节课)的训练计划。训练主要采用固定或随机脚步动作练习的形式。在每节课前后进行计时测试,以测量运动员在执行六点和四点脚步动作练习时的敏捷性。将结果与使用独立样本 t 检验计算的训练效果进行比较。此外,还测试了训练系统的长期耐用性和功能。该训练系统能够长时间稳定可靠地进行训练和评估操作。结果表明,运动员的视觉反应时间( = 0.003)和敏捷性( = 0.001)有显著提高。所提出的训练系统是一种经济实惠的训练、监测、评估和记录训练表现的选择。它可以准确记录运动和反应时间,并模拟竞争环境。