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Dynamic calibration of an instrumented bike brake hood in measuring power absorbed by the hands

机译:用手吸收功率的仪表自行车制动罩的动态校准

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One of the most significant factors in ride quality in cycling sports are the vibrations generated by road surface defects passing through the bicycle and transmitted to the cyclist's hands and buttocks. To study comfort, one metric that has been put forward is the measurement of the power absorbed at the cyclist's hands. Measuring absorbed power requires the use of the force and the velocity at the hands and provides an overall energy-based quantity. The aim of this study is to dynamically calibrate an instrumented brake hood transducer to measure the power absorbed at the cyclist's hands. Using a base excitation technique involving suspended masses, dynamic calibration of the brake hood was conducted in the 3-100 Hz frequency range, and the force transducer sensitivity and seismic mass were measured. An accelerometer attached to the brake hood enabled measurements of acceleration and calculation of velocity. A frequency-dependent phase mismatch between the force signal and the acceleration was obtained by measuring the accelerance at the hand-bike interface. A device called the Power Calibrator equipped with an impedance head was developed to assess the accuracy of the power measured by the instrumented brake hood. The results show that the instrumented brake hood can accurately measure the absorbed power at the cyclist's hands. Phase mismatch between the force and the velocity signals must be corrected to improve the accuracy of measurements. To implement the measurements, it is recommended that the calculations be done in the frequency domain.
机译:骑行体育中骑行质量最重要的因素之一是通过自行车穿过自行车并传递给骑自行车的手和臀部的振动。为了学习舒适,已经提出的一个公制是在骑自行车者手中吸收的功率的测量。测量吸收功率需要在手中使用力和速度并提供总能量的量。本研究的目的是动态校准仪器制动罩换能器,以测量骑自行车者手中吸收的功率。使用涉及悬浮质量的基本励磁技术,在3-100Hz频率范围内进行制动罩的动态校准,测量力传感器敏感性和地震块。连接到制动罩的加速度计使能加速度和速度的计算。通过测量手册界面处的加速来获得力信号和加速度之间的频率相关的相位失配。开发了一种称为配备有阻抗头的电源校准器的装置,以评估仪表制动罩测量的功率的精度。结果表明,仪表制动罩可以精确地测量骑自行车者手中的吸收力。必须校正力和速度信号之间的相位失配以提高测量的准确性。要实现测量,建议在频域中完成计算。

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