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A new priority-based dynamic protocol for multiple access control improves data transfer rates in WBANs

机译:一种基于优先级的新动态协议,用于多路访问控制,可提高WBAN中的数据传输速率

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HighlightsWe improved the throughput of WBANs when the sensor nodes operate at distinct and considerably different sampling rates.We compare the performance of our method with other relevant MACs.The use of a dynamic priority model for medium access and for data reading resulted in better use of the RF channel.The proposed protocol was capable of sustaining operation of a WBAN with an average traffic higher than that supported by Polling and TraPy-MAC.AbstractEven with the advances made in the so-called Body Area Networks (BAN), there is still a distinct and growing demand for technology that allows for the development of applications involving high sensor density and signals gathered at very distinct sampling rates, which impose non-trivial demands on the Medium Access Control (MAC) protocol for the management of wireless systems (WBANs). In this article, the authors present a new medium access protocol for WBANs, which is based on a priority model that dynamically alters the reading sequence of the network nodes. The proposed protocol, referred to as MAR-PC (Multiple Access with Reserve and Priority Control), was developed by taking as a base the Polling protocol. It is capable of defining the priority of the sensors in the network based on their sampling rates as well as on an estimate of the volume of pending data to be read in each sensor. Through this strategy, the central node, even though it is not in constant communication with the sensors, is capable of dynamically evaluating the time limit for the interrogation of a node, thus avoiding loss of data. The performance of the MAR-PC was compared to that of a standard Polling protocol and to other MACs published in recent literature. The results show a significant improvement in the throughput of the WBAN in comparison with competing protocols, especially when the sensor nodes operate at distinct and considerably different sampling rates.
机译: 突出显示 当传感器节点以截然不同的采样率工作时,我们提高了WBAN的吞吐量。 < ce:list-item id =“ lsti0010”> 我们将我们的方法与其他相关MAC的性能进行了比较。 使用动态优先级模型进行媒体访问和数据读取可以更好地利用RF信道。 建议的协议能够维持WBAN的运行,其平均流量要高于Polling和TraPy-MAC支持的流量。 摘要 即使在所谓的人体区域网络(BAN)的进步中,仍然存在对技术的独特且不断增长的需求,该技术允许开发涉及高传感器密度和以非常不同的采样率收集信号的应用,这提出了不平凡的要求关于用于无线系统(WBAN)管理的媒体访问控制(MAC)协议的内容。在本文中,作者提出了一种新的WBAN媒体访问协议,该协议基于优先级模型,该模型可以动态更改网络节点的读取顺序。提议的协议称为MAR-PC(具有保留和优先级控制的多路访问),是通过将轮询协议作为基础而开发的。它能够基于传感器的采样率以及每个传感器中待读取的待处理数据量的估计值来定义网络中传感器的优先级。通过这种策略,即使中央节点不与传感器保持持续通信,它也能够动态评估询问节点的时间限制,从而避免数据丢失。将MAR-PC的性能与标准轮询协议的性能以及最新文献中发布的其他MAC进行了比较。结果表明,与竞争协议相比,WBAN的吞吐量有了显着提高,尤其是当传感器节点以不同且明显不同的采样率运行时。

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