Energy Harvesting-Assisted Cognitive Sensor Nodes in Wireless Body Area Networks

A. Shukla, P. K. Upadhyay, Abhishek Srivastava, J. M. Moualeu
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Abstract

This paper aims to propose and analyze an energy-and spectrum-efficient wireless body area network (WBAN) for smart healthcare applications. On one hand, we focus on improving the spectrum utilization in WBANs by incorporating an overlay cognitive radio (CR) paradigm that allows the co-existence of various sensor nodes as primary and secondary users based on their applications i.e., medical or non-medical. On the other hand, we employ an energy harvesting (EH) based time-switching cooperation protocol through the secondary device to improve energy efficiency. We evaluate the performance of the proposed overlay CR WBAN in terms of outage probability, throughput and energy efficiency, and thereby provide practical design guidelines in IoT-based e-healthcare framework. Above all, we assess the correctness of the proposed analytical framework when compared to Monte Carlo simulations.
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无线体域网络中能量收集辅助认知传感器节点
本文旨在提出并分析一种用于智能医疗应用的高能效无线体域网络(WBAN)。一方面,我们专注于通过结合覆盖认知无线电(CR)范式来提高WBANs的频谱利用率,该范式允许各种传感器节点根据其应用(即医疗或非医疗)作为主要和次要用户共存。另一方面,我们通过二次设备采用基于能量收集(EH)的时间切换合作协议来提高能量效率。我们从中断概率、吞吐量和能源效率方面评估了所提出的覆盖CR WBAN的性能,从而为基于物联网的电子医疗框架提供了实用的设计指南。最重要的是,我们评估了所提出的分析框架的正确性,并与蒙特卡罗模拟进行了比较。
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