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A Detailed Algorithm for Vital Sign Monitoring of a Stationary/Non-Stationary Human through IR-UWB Radar

机译:通过IR-UWB雷达监测固定/非固定人体生命体征的详细算法

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The vital sign monitoring through Impulse Radio Ultra-Wide Band (IR-UWB) radar provides continuous assessment of a patient’s respiration and heart rates in a non-invasive manner. In this paper, IR UWB radar is used for monitoring respiration and the human heart rate. The breathing and heart rate frequencies are extracted from the signal reflected from the human body. A Kalman filter is applied to reduce the measurement noise from the vital signal. An algorithm is presented to separate the heart rate signal from the breathing harmonics. An auto-correlation based technique is applied for detecting random body movements (RBM) during the measurement process. Experiments were performed in different scenarios in order to show the validity of the algorithm. The vital signs were estimated for the signal reflected from the chest, as well as from the back side of the body in different experiments. The results from both scenarios are compared for respiration and heartbeat estimation accuracy.
机译:通过脉冲无线电超宽带(IR-UWB)雷达进行的生命体征监测以无创方式连续评估患者的呼吸和心率。在本文中,IR UWB雷达用于监测呼吸和人类心律。呼吸频率和心率频率是从人体反射的信号中提取的。应用卡尔曼滤波器来减少生命信号中的测量噪声。提出了一种从呼吸谐波中分离出心率信号的算法。一种基于自相关的技术被应用于检测测量过程中的随机身体运动(RBM)。为了证明算法的有效性,在不同场景下进行了实验。在不同的实验中,估计了从胸部以及从身体背面反射的信号的生命体征。比较两种情况下的结果,以获取呼吸和心跳估计的准确性。

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