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A QoS MAC protocol for prioritized data in energy harvesting wireless sensor networks

机译:用于能量收集无线传感器网络中优先数据的QoS MAC协议

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In wireless sensor networks (WSNs), energy harvesting techniques have emerged as a promising solution to overcome the energy challenge. In certain applications, sensor nodes are required to transmit higher priority data packets with minimum delay. In the literature, most of the available protocols in energy harvesting WSNs (EH-WSNs) did not support the priority of data packets. In addition, these protocols have not considered different energy levels of the receiver and have also not been tested under real-world energy harvesting rates. Therefore, there is a need to design a medium access control (MAC) protocol for Quality-of-Service (QoS) in EH-WSNs, which can support the priority of data packets and consider different energy levels of the receiver with realistic harvesting rates. This paper proposes a QoS MAC protocol for Prioritized Data in EH-WSNs (QPPD-MAC). The QPPD-MAC supports multi-priority of data packets and uses a novel technique to shorten the delay by cancelling the waiting timer for the highest priority data packets. Furthermore, it adjusts the receiver duty cycle according to its current energy level under dynamic energy harvesting conditions to improve performance. The QPPD-MAC protocol is evaluated under a more realistic scenario using high resolution real empirical solar irradiance data and its performance compared with QAEE-MAC and ERI-MAC. The results show that the QPPD-MAC gives an impressive reduction of more than 54% in the average end-to-end delay of priority data packets in both high and low irradiance scenarios. Moreover, in the low solar irradiance, it shows an improvement in the packet delivery ratio of up to 10% and gives better performance in terms of network throughput and energy consumption per bit. (C) 2018 Elsevier B.V. All rights reserved.
机译:在无线传感器网络(WSN)中,能量收集技术已经成为克服能量挑战的有前途的解决方案。在某些应用中,要求传感器节点以最小的延迟发送更高优先级的数据包。在文献中,能量收集WSN(EH-WSN)中的大多数可用协议都不支持数据包的优先级。另外,这些协议没有考虑接收器的不同能量水平,也没有在实际的能量收集速率下进行过测试。因此,需要设计一种用于EH-WSN中的服务质量(QoS)的媒体访问控制(MAC)协议,该协议可以支持数据包的优先级,并考虑具有实际收获率的接收器的不同能量水平。本文提出了一种用于EH-WSN中优先数据的QoS MAC协议(QPPD-MAC)。 QPPD-MAC支持数据包的多优先级,并使用一种新颖的技术通过取消等待优先级最高的数据包的计时器来缩短延迟。此外,它在动态能量收集条件下根据其当前能量水平调整接收器占空比,以提高性能。与高分辨率的QAEE-MAC和ERI-MAC相比,QPPD-MAC协议是在更现实的情况下使用高分辨率的真实经验太阳辐照度数据及其性能进行评估的。结果表明,在高辐照度和低辐照度情况下,QPPD-MAC均将优先数据包的平均端到端延迟显着降低了54%以上。此外,在低太阳辐射下,它显示出高达10%的数据包传输率改善,并且在网络吞吐量和每比特能耗方面都具有更好的性能。 (C)2018 Elsevier B.V.保留所有权利。

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