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Design of Pulse Oximetry Based on Photoplethysmography and Beat Rate Signal Using DS-100 Probe Sensor for SpO2 Measurement

机译:DS-100探头传感器基于光电容积描记和心跳率信号的脉搏血氧饱和度设计,用于SpO 2 测量

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This paper presents the design of pulse oximetry to measure oxygen in blood saturation (SpO2) using an Arduino Uno module. The SpO2 measurement was conducted by acquiring the signal photoplethysmography (PPG) at the fingertip using a DS-100A probe consisting of an infrared (960 nm) and a red (640 nm) light sources, and also a photodiode. The signal of the photodiode is amplified and filtered with three frequency poles, i.e., 0.5 Hz, 1 Hz and 1.6 Hz. The result of the filtering shows that the PPG signal at the fingertip gives stable maximum and minimum values of 1.1697 volts and 1.1557 volts for red and 3.3946 volts and 3.3092 volts for infrared rays. From these results, the AC/DC voltage can be calculated for red and infrared lights resulting 98.26% SpO2 level, which states normal conditions. The maximum AC/DC voltage value occurs at the little finger and the minimum value occurs at the thumb finger. SpO2 signal was compared to the JZK-301 calibrator and shows the percentage error results (ε) less than 1% on each finger.
机译:本文介绍了用于测量血氧饱和度(SpO)的脉搏血氧仪的设计 2 )使用Arduino Uno模块。 SpO 2 通过使用由红外(960 nm)和红色(640 nm)光源以及光电二极管组成的DS-100A探头在指尖获取信号光体积描记法(PPG)进行测量。光电二极管的信号被三个频率极点放大和滤波,即0.5Hz,1Hz和1.6Hz。过滤的结果表明,指尖的PPG信号对于红色给出了稳定的最大值和最小值,分别为1.1697伏特和1.1557伏特,对于红外线给出了3.3946伏特和3.3092伏特。根据这些结果,可以计算出红光和红外光的AC / DC电压,得出98.26%SpO 2 级别,说明正常情况。最大的AC / DC电压值出现在小指上,最小的值出现在拇指指上。血氧分压 2 信号与JZK-301校准器进行了比较,显示每个手指的百分比误差结果(ε)小于1%。

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