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采用直接传感器到微控制器接口测量动态信号并应用于磁阻传感器

Measuring Dynamic Signals with Direct Sensor-to-Microcontroller Interfaces Applied to a Magnetoresistive Sensor.

作者信息

Sifuentes Ernesto, Gonzalez-Landaeta Rafael, Cota-Ruiz Juan, Reverter Ferran

机构信息

Department of Computer and Electrical Engineering, Universidad Autónoma de Ciudad Juárez (UACJ), 32310 Ciudad Juárez, Mexico.

e-CAT Research Group, Department of Electronic Engineering, Universitat Politècnica de Catalunya (UPC)-BarcelonaTech, C/Esteve Terradas 7, C4, 08860 Castelldefels, Spain.

出版信息

Sensors (Basel). 2017 May 18;17(5):1150. doi: 10.3390/s17051150.

Abstract

This paper evaluates the performance of direct interface circuits (DIC), where the sensor is directly connected to a microcontroller, when a resistive sensor subjected to dynamic changes is measured. The theoretical analysis provides guidelines for the selection of the components taking into account both the desired resolution and the bandwidth of the input signal. Such an analysis reveals that there is a trade-off between the sampling frequency and the resolution of the measurement, and this depends on the selected value of the capacitor that forms the RC circuit together with the sensor resistance. This performance is then experimentally proved with a DIC measuring a magnetoresistive sensor exposed to a magnetic field of different frequencies, amplitudes, and waveforms. A sinusoidal magnetic field up to 1 kHz can be monitored with a resolution of eight bits and a sampling frequency of around 10 kSa/s. If a higher resolution is desired, the sampling frequency has to be lower, thus limiting the bandwidth of the dynamic signal under measurement. The DIC is also applied to measure an electrocardiogram-type signal and its QRS complex is well identified, which enables the estimation, for instance, of the heart rate.

摘要

本文评估了直接接口电路(DIC)的性能,其中传感器直接连接到微控制器,用于测量受到动态变化的电阻式传感器。理论分析为组件的选择提供了指导方针,同时考虑了所需的分辨率和输入信号的带宽。这样的分析表明,在采样频率和测量分辨率之间存在权衡,这取决于与传感器电阻一起构成RC电路的电容器的选定值。然后通过一个DIC对暴露于不同频率、幅度和波形磁场的磁阻传感器进行测量,对这种性能进行了实验验证。高达1kHz的正弦磁场可以以8位分辨率和约10kSa/s的采样频率进行监测。如果需要更高的分辨率,采样频率就必须更低,从而限制了被测动态信号的带宽。该DIC还用于测量心电图类型的信号,其QRS复合波能够被很好地识别,这使得例如心率的估计成为可能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6356/5470896/e669835e07a7/sensors-17-01150-g001.jpg

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