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Design and Verification of a Portable Scanner for Body-worn Wireless Resistive Analog Passive (WRAP) Sensors

机译:用于车身磨损的无线电阻模拟无源(包装)传感器的便携式扫描仪的设计和验证

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Wireless resistive analog passive (WRAP) sensors are low cost, battery less, body-worn physiological sensors. Portable Scanner is a hardware device capable of acquiring physiological signals from multiple types of WRAP sensors using amplitude modulation (AM) technique. The signal acquisition relies on inductive loading principal of signal due to impedance mismatch between the LC resonator circuits of scanner and the wireless passive sensor. The physiological signals of the subject affect the impedance that results in the mismatch, which eventually modulates the amplitude of scanner-generated carrier wave at 6.15 MHz. The DDS along with RF power amplifier of the scanner generates the carrier wave. The AM wave's top envelope is picked up by an envelope demodulator (f 1 KHz) from the AM signal. The signal is processed in analog domain by utilizing a 2nd order Butterworth low pass filter (1.5 KHz), a variable gain (Av) amplifier (Avmin = 1, Av_(ma)x = 9), then signal is acquired in digital domain via 12 bit ADC and finally is transmitted to a smartphone application via a Class 2 Bluetooth wireless link at a baud rate of 115.2 kbps. The developed scanner device uses a 4-layer PCB (14 cm X 5 cm X 1.25 cm), and contained a 32-bit low power flash microcontroller (STM32L476) based on ARM Cortex - M processor. The device is powered by a 2000 mAh Li-Poly battery. The circuit consumes 0.69 mA during scanning burst, which can sustain continuous scanning of more than 2028 hours (for consumption rate of 0.7).
机译:无线电阻模拟无源(包装)传感器低成本,电池较少,身体磨损的生理传感器。便携式扫描器是能够从多种类型的使用幅度调制(AM)技术WRAP传感器获取的生理信号的硬件设备。由于扫描仪和无线无源传感器之间的LC谐振器电路之间的阻抗不匹配,信号采集依赖于信号的电感负载主体。受试者的生理信号影响导致不匹配的阻抗,最终调节6.15MHz的扫描仪产生的载波的幅度。 DDS以及扫描仪的RF功率放大器产生载波。 AM Wave的顶部信封由来自AM信号的包络解调器(F 1 kHz)拾取。通过利用2ND订单Butterworth低通滤波器(1.5 kHz),可变增益(AV)放大器(AVMIN = 1,AV_(MA)X = 9)中的信号处理信号,然后在数字域通过中获取信号12位ADC,最后通过115.2 kbps的波特率通过2类蓝牙无线链路传输到智能手机应用程序。开发的扫描仪装置使用4层PCB(14cm x 5cm x 1.25cm),并包含基于ARM Cortex - M处理器的32位低功耗闪光微控制器(STM32L476)。该器件由2000 MAHLI-POLY电池供电。电路在扫描突发期间消耗0.69 mA,可以维持超过2028小时的连续扫描(用于消耗率为0.7)。

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