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Microprocessor-based athlete health monitoring device based on heart rate and stride length calculation

机译:基于心率和步幅计算的基于微处理器的运动员健康监测装置

摘要

Abnormal heart rate or low heart rate during exercise or recovery has been known to cause cardiac arrest and even sudden death in some cases. Similarly, research has shown that low step rate while running may be the causal factor for running injuries due to the force impact exerted and the extra loadings on the lower body joints. Commercial electronic devices used by athletes typically use either accelerometers or coil springs to estimate the step rate resulting in low accuracy. This paper describes the design a low-cost, wearable device that can help athletes monitor their physical activity while running or walking and report step rate, heart rate, distance covered, time elapsed and calories burnt with high accuracy. The system calculates the step rate by analyzing the signal generated from two Force Sensitive Resistors (FSRs) inserted above the insole of a running shoe which is connected to a microcontroller strapped to the athlete’s ankle. According to the experimental results, the prototype was found to have an average accuracy of 97% in measuring the distance covered.
机译:在某些情况下,运动或恢复过程中异常的心率或低心率会导致心脏骤停,甚至猝死。同样,研究表明,跑步时的低步速可能是跑步者受伤的原因,这是由于施加的力冲击和下半身关节的额外负荷所致。运动员使用的商用电子设备通常使用加速度计或螺旋弹簧来估算步速,从而导致精度较低。本文介绍了一种低成本,可穿戴设备的设计,该设备可帮助运动员监视跑步或行走时的身体活动并以高精度报告步速,心率,所覆盖的距离,经过的时间和燃烧的卡路里。该系统通过分析两个插在跑鞋鞋垫上方的力敏感电阻(FSR)产生的信号来计算步速,该电阻连接到绑在运动员脚踝上的微控制器。根据实验结果,该原型在测量覆盖距离方面的平均精度为97%。

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