具有TransferJet数据通信和感应功率传输的可穿戴健康监视器

Nicolai Dobrostomat, Gheorghe Turcan, M. Neag
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引用次数: 2

摘要

这里展示的健康监测系统包括一个可穿戴设备——一个带有一组生物医学传感器的腕带,这些传感器连接到一个由微控制器实现的中心节点,该微控制器能够控制和收集这些传感器的数据,对数据进行预处理并存储在本地存储器中,然后将它们传输到基于usb的TransferJet适配器——以及一个由笔记本电脑或智能手机托管的基站,该基站通过自己的基于usb的TransferJet适配器接收数据。处理它们并将结果传达给用户和/或直接传达给保健专业人员。TransferJet适配器采用超宽带技术,以极短的脉冲传输数据,仅在几厘米的范围内。因此,窥探实际上是不可能的,平均功耗可以保持低。在数据传输期间,可穿戴设备与基站所需的距离用于实现感应功率传输系统,该系统在此期间为可穿戴设备供电,这与最大功率浪涌相吻合。
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Wearable health monitors with TransferJet data communications and inductive power transfer
The health monitoring system presented here consists of a wearable device- a wristband that hosts a set of biomedical sensors connected to a central node implemented by a microcontroller able to control and collect data from them, pre-processes and stores data in a local memory, then transfers them to an USB-based TransferJet Adapter- and a base-station hosted by a laptop or smart phone, that receives the data by its own USB-based TransferJet Adapter, processes them and communicates the results to the user and/or directly to health-care professionals. The TransferJet Adapters employ UWB technology to transfer data in very short bursts, over a range of only a few centimeters. Thus, snooping is practically impossible and the average power consumption can be kept low. The required proximity of the wearable device to the base-station during data transfers is used to implement an inductive power transfer system, which supplies the wearable device during that period, which coincides with the maximum power surge.
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