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Energy Efficient System-on-chip Design for Wireless Body Area Sensor Network

机译:无线人体区域传感器网络的节能系统级芯片设计

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摘要

This article presents a novel energy-efficient on-chip design for wireless body area sensor networks focused towards pervasive healthcare applications. The network adopts a master-slave architecture, where the body-worn slave nodes periodically send sensor readings to a central master node. Unlike traditional peer-to-peer wireless sensor networks, the nodes in this wireless body area sensor networks are not deployed in an ad hoc fashion. The network is centrally managed and all communications are single-hop. A cluster algorithm is also presented so that all slave nodes are within the transmission range of the master nodes. It pretends that all slave nodes can share resources and information over the internet to reduce energy consumption. The design on system-on-chip platform has been simulated for some experiments and implemented. Compared to published and industrially used schemes, the power consumption of the proposed design is over 30 and 99% lower in the simulation and platform implementation, respectively.
机译:本文提出了一种针对无线人体区域传感器网络的新型节能片上设计,其重点是普及的医疗保健应用。该网络采用主从结构,随身穿戴的从节点会定期将传感器读数发送到中央主节点。与传统的对等无线传感器网络不同,此无线人体区域传感器网络中的节点不是以临时方式部署的。网络是集中管理的,所有通信都是单跳的。还提出了一种群集算法,以便所有从属节点都在主节点的传输范围内。它假装所有从属节点都可以通过Internet共享资源和信息,以减少能耗。对片上系统平台的设计进行了仿真,并进行了一些实验。与已发布和工业上使用的方案相比,在仿真和平台实施中,拟议设计的功耗分别降低了30%和99%以上。

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