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Performance Analysis of Preamble-Based TDMA Protocol for Wireless Body Area Network

机译:无线体域网中基于前同步码的TDMA协议的性能分析

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摘要

A wireless body area network (WBAN) allows the integration of low power, invasive or non-invasive miniaturized sensors around a human body. Each intelligent sensor has enough capability to analyze and process the physiological parameters and to forward all the information to a central intelligent node for disease management, diagnosis and prescription. The data transmission rate of various biosensors is heterogeneous. Furthermore, the limited energy resources and computational power of these sensors have urged the development of low power energy efficient medium access control (MAC) protocol. This paper studies the performance of Preamble Based time division multiple access (PB-TDMA) protocol for a heterogeneous non-invasive WBAN. Simulation results show that the performance of PB-TDMA protocol outperforms S-MAC and IEEE 802.11 DCF in terms of throughput and power consumption.
机译:无线人体局域网(WBAN)允许在人体周围集成低功耗,有创或无创微型传感器。每个智能传感器都具有足够的能力来分析和处理生理参数,并将所有信息转发到中央智能节点以进行疾病管理,诊断和处方。各种生物传感器的数据传输速率是异构的。此外,这些传感器的有限能量资源和计算能力已经促使开发低功率能量高效媒体访问控制(MAC)协议。本文研究了异构无创WBAN的基于前同步码的时分多址(PB-TDMA)协议的性能。仿真结果表明,在吞吐量和功耗方面,PB-TDMA协议的性能优于S-MAC和IEEE 802.11 DCF。

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