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Muscle Strength Endurance Testing Development Based Photo Transistor with Motion Sensor Ultrasonic

机译:基于肌肉力量耐力测试开发的运动传感器超声波晶体管

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The endurance of upper-body muscles is one of the most important physical fitness components. As technology develops, the process of test and assessment is now getting digital; for instance, there are a sensor stuck to the shoe (Foot Pod, Polar, and Sunto), Global Positioning System (GPS) and Differential Global Positioning System (DGPS), radar, photo finish, kinematic analysis, and photocells. Those devices aim to analyze the performances and fitness of athletes particularly the endurance of arm, chest, and shoulder muscles. In relation to that, this study attempt to create a software and a hardware for pull-ups through phototransistor with ultrasonic motion sensor. Components needed to develop this device consist of microcontroller MCS-51, photo transistor, light emitting diode, buzzer, ultrasonic sensor, and infrared sensor. The infrared sensor is put under the buffer while the ultrasonic sensor is stuck on the upper pole. The components are integrated with an LED or a laptop made using Visual Basic 12 software. The results show that pull-ups test using digital device (mean; 9.4 rep) is lower than using manual calculation (mean; 11.3 rep). This is due to the fact that digital test requires the test-takers to do pull-ups perfectly.
机译:上身肌肉的耐久性是最重要的物理健身部件之一。随着技术的发展,测试和评估过程现在正在获得数字;例如,有一个传感器粘附在鞋(脚荚,极性和SUNTO),全球定位系统(GPS)和差动全球定位系统(DGP),雷达,光学,运动学分析和光电池。这些设备旨在分析运动员的性能和适应性,特别是手臂,胸部和肩部肌肉的耐力。关于此,本研究试图通过具有超声波运动传感器的光电晶体管来创建软件和硬件。开发此设备所需的组件包括微控制器MCS-51,光晶体管,发光二极管,蜂鸣器,超声波传感器和红外传感器。在超声波传感器卡在上极的情况下,将红外传感器放在缓冲器下方。这些组件与LED或使用Visual Basic 12软件进行的笔记本电脑集成。结果表明,使用数字设备(平均值; 9.4代表)的提升测试低于使用手动计算(平均值; 11.3代表)。这是由于数字测试要求测试者可以完美地进行拉动。

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