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Design and Implementation of Respiration Rate Measurement System Using an Information Filter on an Embedded Device

机译:嵌入式设备上使用信息过滤器的呼吸速率测量系统的设计与实现

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摘要

In this work, an algorithm was developed to measure respiration rate for an embedded device that can be used by a field robot for relief operations. With this algorithm, the rate measurement was calculated based on direct influences of respiratory-induced intensity variation (RIIV) on blood flow in cardiovascular pathways. For this, a photoplethysmogram (PPG) sensor was used to determine changes in heartbeat frequencies. The PPG sensor readings were filtered using an Information Filter and a fast Fourier transform (FFT) to determine the state of RIIV. With a relatively light initialization, the information filter can estimate unknown variables based on a series of measurements containing noise and other inaccuracies. Therefore, this filter is suitable for application in an embedded device. For faster calculation time in the implementation, the FFT analysis was calculated only for a major peak in frequency domain. Test and measurement of respiration rate was conducted based on the device algorithm and spirometer. Heartbeat measurements were also evaluated by comparing the heartbeat data of the PPG sensor and pulse-oximeter. Based on the test, the implemented algorithm can measure the respiration rate with approximately 80% accuracy compared with the spirometer.
机译:在这项工作中,开发了一种算法来测量嵌入式设备的呼吸速率,该嵌入式设备可由现场机器人用于救援行动。使用该算法,根据呼吸诱发的强度变化(RIIV)对心血管途径血流的直接影响来计算速率测量值。为此,使用光电容积脉搏波(PPG)传感器确定心跳频率的变化。使用信息过滤器和快速傅立叶变换(FFT)对PPG传感器的读数进行过滤,以确定RIIV的状态。通过相对较小的初始化,信息过滤器可以基于一系列包含噪声和其他不准确性的测量值来估计未知变量。因此,该滤波器适用于嵌入式设备中的应用。为了在实施中更快地计算时间,仅对频域中的一个主要峰进行了FFT分析。基于设备算法和肺活量计进行呼吸频率的测试和测量。还通过比较PPG传感器和脉搏血氧仪的心跳数据来评估心跳测量。基于测试,与肺活量计相比,所实现的算法可以以大约80%的精度测量呼吸频率。

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