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A Novel IEEE 802.11 Power Save Mechanism for Energy Harvesting Motivated Networks

机译:用于能量收集动力网络的新型IEEE 802.11节电机制

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摘要

The spread of wirelessly connected computing sensors and devices and hybrid networks are leading to the emergence of an Internet of Things (IoT), where a myriad of multi-scale sensors and devices are seamlessly blended for ubiquitous computing and communication. However, the communication operations of wireless devices are often limited by the size and lifetime of the batteries because of the portability and mobility. To reduce energy consumption during wireless communication, the IEEE 802.11 standard specifies a power management scheme, called Power Saving Mechanism (PSM), for IEEE 802.11 devices. However, the PSM of IEEE 802.11 was originally designed for battery-supported devices in single-hop Wireless Local Area Networks (WLANs), and it does not consider devices that are equipped with rechargeable batteries and energy harvesting capability. In this thesis, the original PSM is extended by incorporating with intermittent energy harvesting in the IEEE 802.11 Medium Access Control (MAC) layer specification, and a novel energy harvesting aware power saving mechanism, called EH-PSM, is proposed. The basic idea of EH-PSM is to assign a longer contention window to a device in energy harvesting mode than that of a device in normal mode to make the latter access the wireless medium earlier and quicker. In addition, the device in energy harvesting mode stays active as far as it harvests energy and updates the access point of its harvesting mode to enable itself to be ready for receiving and sending packets or overhearing any on-going communication. The proposed scheme is evaluated through extensive simulation experiments using OMNeT++ and its performance is compared with the original PSM. The simulation results indicate that the proposed scheme can not only improve the packet delivery ratio and throughput but also reduce the packet delivery latency.
机译:无线连接的计算传感器和设备以及混合网络的普及正导致物联网(IoT)的出现,其中将无数种多尺度传感器和设备无缝地融合在一起以实现无处不在的计算和通信。然而,由于便携性和移动性,无线设备的通信操作通常受到电池的尺寸和寿命的限制。为了减少无线通信期间的能耗,IEEE 802.11标准指定了一种用于IEEE 802.11设备的电源管理方案,称为省电机制(PSM)。但是,IEEE 802.11的PSM最初是为单跳无线局域网(WLAN)中受电池支持的设备设计的,它不考虑配备可充电电池和能量收集功能的设备。本文通过将间歇性能量收集与IEEE 802.11媒体访问控制(MAC)层规范相结合来扩展原始PSM,并提出了一种新颖的能量收集感知节能机制,称为EH-PSM。 EH-PSM的基本思想是为能量收集模式下的设备分配比正常模式下的设备更长的竞争窗口,以使后者更早,更快地访问无线介质。此外,处于能量收集模式的设备一直保持活动状态,直到它收集能量并更新其收集模式的接入点,以使其自身准备好接收和发送数据包或监听任何正在进行的通信。通过使用OMNeT ++进行广泛的仿真实验对提出的方案进行了评估,并将其性能与原始PSM进行了比较。仿真结果表明,所提出的方案不仅可以提高数据包的传输率和吞吐量,而且可以减少数据包的传输等待时间。

著录项

  • 作者

    Celik, Yigitcan.;

  • 作者单位

    Marshall University.;

  • 授予单位 Marshall University.;
  • 学科 Computer science.
  • 学位 M.S.
  • 年度 2018
  • 页码 51 p.
  • 总页数 51
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;
  • 关键词

  • 入库时间 2022-08-17 11:53:04

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