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Low-Power Body Sensor Network for Wireless ECG Based on Relaying of Creeping Waves at 2.4GHz

机译:基于2.4GHz爬行波中继的无线ECG低功耗人体传感器网络

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摘要

A wireless communication platform for ECG operating in the unlicensed 2.4-2.4835GHz band is proposed and analyzed. The platform uses relaying of creeping waves to drastically reduce sensor transmission power while maintaining reliable performance. A point to point link budget is designed based on the creeping wave component of the propagating signal. The link budget is then integrated into a body sensor network design. System management details are presented and discussed. Performance metrics including scalability of the system and network lifetime are evaluated. The proposed design is shown to achieve a dramatic 1.5x105 increase in battery life for mobile scenarios compared to a reference system without relaying. In addition, it is shown that the design may scale to support applications that demand higher data rates than ECG.
机译:提出并分析了一种用于ECG的无线通信平台,该平台可在未经许可的2.4-2.4835GHz频段内运行。该平台使用中继波中继技术来大大降低传感器的传输功率,同时保持可靠的性能。基于传播信号的蠕变波分量设计点对点链路预算。然后将链路预算集成到人体传感器网络设计中。提出并讨论了系统管理的详细信息。评估性能指标,包括系统的可伸缩性和网络寿命。与没有中继的参考系统相比,建议的设计在移动场景下可实现1.5x105的电池寿命显着增长。此外,表明该设计可以扩展以支持需要比ECG更高数据速率的应用程序。

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