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Comparison of low-power wireless communication technologies for wearable health-monitoring applications

机译:可穿戴健康监测应用的低功耗无线通信技术的比较

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Health monitoring technologies such as Body Area Network (BAN) systems has gathered a lot of attention during the past few years. Largely encouraged by the rapid increase in the cost of healthcare services and driven by the latest technological advances in Micro-Electro-Mechanical Systems (MEMS) and wireless communications. BAN technology comprises of a network of body worn or implanted sensors that continuously capture and measure the vital parameters such as heart rate, blood pressure, glucose levels and movement. The collected data must be transferred to a local base station in order to be further processed. Thus, wireless connectivity plays a vital role in such systems. However, wireless connectivity comes at a cost of increased power usage, mainly due to the high energy consumption during data transmission. Unfortunately, battery-operated devices are unable to operate for ultra-long duration of time and are expected to be recharged or replaced once they run out of energy. This is not a simple task especially in the case of implanted devices such as pacemakers. Therefore, prolonging the network lifetime in BAN systems is one of the greatest challenges. In order to achieve this goal, BAN systems take advantage of low-power in-body and on-body/off-body wireless communication technologies. This paper compares some of the existing and emerging low-power communication protocols that can potentially be employed to support the rapid development and deployment of BAN systems.
机译:在过去几年中,身体区域网络(禁令)系统等健康监测技术在过去几年中聚集了很多关注。在很大程度上鼓励了医疗保健服务成本的快速增加,并由微电机械系统(MEMS)和无线通信的最新技术进步驱动。禁令技术包括一个身体磨损或植入传感器的网络,其连续捕获和测量心率,血压,葡萄糖水平和运动等重要参数。必须将收集的数据传送到本地基站以进一步处理。因此,无线连接在这种系统中起着至关重要的作用。然而,无线连接以增加功率使用率,主要是由于数据传输期间的高能耗。不幸的是,电池操作的设备无法用于超长持续时间,并且一旦它们耗尽能量,预计将被充电或更换。这不是一个简单的任务,特别是在诸如起搏器的植入设备的情况下。因此,延长禁止系统中的网络寿命是最大的挑战之一。为了实现这一目标,禁令系统利用低功耗的身体和身体/卵体无线通信技术。本文比较了一些现有和新兴的低功耗通信协议,这些协议可能会用于支持禁令系统的快速开发和部署。

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