Department of Electrical and Electronic Engineering, University College Cork, Cork, Ireland.
Sensors (Basel). 2012;12(6):7917-37. doi: 10.3390/s120607917. Epub 2012 Jun 8.
In recent years there is growing pressure on the medical sector to reduce costs while maintaining or even improving the quality of care. A potential solution to this problem is real time and/or remote patient monitoring by using mobile devices. To achieve this, medical sensors with wireless communication, computational and energy harvesting capabilities are networked on, or in, the human body forming what is commonly called a Wireless Body Area Network (WBAN). We present the implementation of a novel Wake Up Receiver (WUR) in the context of standardised wireless protocols, in a signal-oriented WBAN environment and present a novel protocol intended for wireless health monitoring (WhMAC). WhMAC is a TDMA-based protocol with very low power consumption. It utilises WBAN-specific features and a novel ultra low power wake up receiver technology, to achieve flexible and at the same time very low power wireless data transfer of physiological signals. As the main application is in the medical domain, or personal health monitoring, the protocol caters for different types of medical sensors. We define four sensor modes, in which the sensors can transmit data, depending on the sensor type and emergency level. A full power dissipation model is provided for the protocol, with individual hardware and application parameters. Finally, an example application shows the reduction in the power consumption for different data monitoring scenarios.
近年来,医疗行业面临着降低成本的压力,同时还要保持甚至提高护理质量。解决这个问题的一个潜在方法是通过使用移动设备实时和/或远程监测患者。为了实现这一点,具有无线通信、计算和能量收集能力的医疗传感器被联网到人体上或人体内,形成通常所说的无线体域网 (WBAN)。我们在标准化无线协议的背景下,在面向信号的 WBAN 环境中实现了一种新型唤醒接收器 (WUR),并提出了一种用于无线健康监测的新型协议 (WhMAC)。WhMAC 是一种基于 TDMA 的协议,功耗非常低。它利用 WBAN 特定的功能和新型超低功耗唤醒接收器技术,实现生理信号的灵活且同时非常低功耗的无线数据传输。由于主要应用是在医疗领域或个人健康监测,该协议适用于不同类型的医疗传感器。我们定义了四种传感器模式,传感器可以根据传感器类型和紧急程度传输数据。该协议提供了完整的功耗模型,包括各个硬件和应用参数。最后,一个示例应用程序展示了不同数据监测场景下的功耗降低情况。