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Using smartphone pressure sensors to measure vertical velocities of elevators, stairways, and drones

机译:使用智能手机压力传感器测量电梯,楼梯和无人机的垂直速度

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We measure the vertical velocities of elevators, pedestrians climbing stairs, and drones (flying unmanned aerial vehicles), by means of smartphone pressure sensors. The barometric pressure obtained with the smartphone is related to the altitude of the device via the hydrostatic approximation. From the altitude values, vertical velocities are derived. The approximation considered is valid in the first hundred meters of the inner layers of the atmosphere. In addition to pressure, acceleration values were also recorded using the built-in accelerometer. Numerical integration was performed, obtaining both vertical velocity and altitude. We show that data obtained using the pressure sensor is significantly less noisy than that obtained using the accelerometer. Error accumulation is also evident in the numerical integration of the acceleration values. In the proposed experiments, the pressure sensor also outperforms GPS, because this sensor does not receive satellite signals indoors and, in general, the operating frequency is considerably lower than that of the pressure sensor. In the cases in which it is possible, comparison with reference values taken from the architectural plans of buildings validates the results obtained using the pressure sensor. This proposal is ideally performed as an external or outreach activity with students to gain insight about fundamental questions in mechanics, fluids, and thermodynamics.
机译:我们通过智能手机压力传感器测量电梯、爬楼梯的行人和无人机(飞行的无人机)的垂直速度。通过静水压近似,智能手机获得的大气压力与设备的高度有关。根据高度值,可得出垂直速度。所考虑的近似值在大气内层的前100米范围内有效。除了压力,还使用内置加速计记录加速度值。进行数值积分,获得垂直速度和高度。我们发现,使用压力传感器获得的数据比使用加速度计获得的数据噪音小得多。误差累积在加速度值的数值积分中也很明显。在提出的实验中,压力传感器的性能也优于GPS,因为这种传感器在室内不接收卫星信号,而且一般来说,其工作频率远低于压力传感器的工作频率。在可能的情况下,与建筑物建筑平面图中的参考值进行比较,可以验证使用压力传感器获得的结果。这项提议最理想的方式是作为一项外部或拓展活动,与学生一起深入了解力学、流体和热力学中的基本问题。

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