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Low-Cost Heart Rate Sensor and Mental Stress Detection Using Machine Learning

机译:使用机器学习的低成本心率传感器和精神压力检测

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One of our major organs heart does the pumping process of oxygen-containing blood and its distribution to the body's arteries every minute. Heart rate or pulse indicates the cardiovascular fitness of a human body. The health condition is predicted by measuring the heartbeat rate, which changes with age, physical and mental conditions. The most familiar way of measuring the heart rate or rhythm is by sensing the pulse per minute by various devices. This paper implements a low-cost heart rate monitoring system using sensors and IoT devices. First, the sensor will be placed on the finger, and subsequently, the color variation will be seen. The sensor picks the color variation, and it measures the interval of color variation. An Arduino microcontroller is used to process the signal. These devices use light to track the blood. Next, the measured heart rate data from the Arduino is stored in CSV files. The Geneva affective picture database has been used to record the heart rate and classify it into three classes of positive, negative, and neutral emotions. Finally, a machine learning algorithm, support vector machine, has been implemented to predict the mental stress condition from the obtained heart rate. Experimental results demonstrate that the support vector machine with the polynomial kernel exhibits the best accuracy.
机译:我们的一个主要的器官心脏可以每分钟泵送含氧血液的泵送过程及其对身体的动脉的分布。心率或脉冲表明人体的心血管适应性。通过测量心跳率来预测健康状况,随着年龄,身体和精神状况而变化。测量心率或节律的最熟悉的方式是通过各种设备感测每分钟的脉冲。本文使用传感器和物联网设备实现了低成本的心率监测系统。首先,传感器将放置在手指上,随后,将看到颜色变化。传感器拾取颜色变化,测量颜色变化的间隔。 Arduino微控制器用于处理信号。这些设备使用光来跟踪血液。接下来,来自Arduino的测量的心率数据存储在CSV文件中。日内瓦情感图片数据库已被用来记录心率并将其分为三类积极,消极和中性情绪。最后,已经实施了一种机器学习算法,支持向量机,以预测所获得的心率的精神胁迫条件。实验结果表明,具有多项式内核的支持向量机表现出最佳精度。

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