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Design of IoT based Health Care Monitoring Systems using Raspberry Pi: A Review of the Latest Technologies and Limitations

机译:使用Raspberry Pi设计基于IoT的医疗监控系统:最新技术和局限性的回顾

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Information and communication technology has advanced in recent days, which has lead to the emergenceof Internet of Things (IoT). The healthcare monitoring system is widely used for various purposes in the current scenario. The fetal measurement and fetal diagnosing can be done using Internet of Things based Health Care Monitoring Systems. An accelerometer sensor can only measure the outside movement of the body and it is not able to measure internal body movements. The measurement can be done only in one, two and three orthogonal axes (3D direction). An accelerometer sensor can be used for fetal movement measurement by only giving a high-frequency range. When the high frequency is given, the object should be at rest to control the resting condition, it shouldn’t move at least for one inch. The fetal movement can be only done in the month of 9th or 10th month. The vibration of fetal heartbeat can be noticed. But the proper output is not obtained practically yet. This paper discuss the work related to appropriate selection of the sensor and programming which provides accurate movement of the fetal and the distance. The newly developed equipment with ultrasound sensor and proximity sensor are used to identify the distance of fetus and mother skin and the size of the fetus, respectively. All these can be measured during the every month of pregnancy. With the support of raspberry Pi, the general working functions of the equipment can improve the speed of the output. The expected conclusion is an ideal ultrasound sensor programmed with raspberry pi which determines/predicts the working function of fetus, and can be so called as fetus monitoring system.
机译:信息和通信技术在最近几天得到了发展,这导致了物联网(IoT)的出现。在当前情况下,医疗监控系统广泛用于各种目的。可以使用基于物联网的医疗监控系统完成胎儿测量和胎儿诊断。加速度传感器只能测量身体的外部运动,而不能测量身体的内部运动。只能在一个,两个和三个正交轴(3D方向)上进行测量。仅通过提供高频范围,加速度计传感器即可用于胎儿运动测量。发出高频信号后,物体应处于静止状态以控制静止状态,并且至少应移动一英寸。胎儿运动只能在第9个月或第10个月进行。可以注意到胎儿心跳的振动。但是实际上还没有获得适当的输出。本文讨论了与传感器的正确选择和编程相关的工作,这些传感器提供了胎儿的精确运动和距离。新开发的带有超声波传感器和接近传感器的设备分别用于识别胎儿和母亲皮肤的距离以及胎儿的大小。所有这些都可以在怀孕的每个月进行测量。在树莓派的支持下,设备的常规工作功能可以提高输出速度。预期的结论是用覆盆子pi编程的理想超声传感器,该传感器可以确定/预测胎儿的工作功能,并且可以称为胎儿监测系统。

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