Analysis of energy efficiency for Wi-Fi 802.11b multi-hop networks

Nasaruddin, Mira Andriani, Melinda, M. Irhamsyah
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引用次数: 6

Abstract

Wireless local area network (WLAN) is growing popularly day by day. A common WLAN application is Wi-Fi technology, where it is easy to find in public areas and has a great interest of internet access users, particularly those who use mobile devices (nodes) such as notebooks and mobile phones. The phenomenon has impact on the energy consumption in Wi-Fi networks. Nowadays, the consumption, management and energy efficiency of indoor wireless networks are important issues. Therefore, this paper analyses the energy efficiency for Wi-Fi 802.11b multi-hop networks. The Wifi 802.11b multi-hop network is simulated using Network Simulator 3 (NS-3), in which the network consists of a line sequence of 5 wireless nodes that are a source, three relays and a destination. In the simulation, several energy parameters are considered such as the number of nodes, grid spacing, packet size and data rate. Moreover, several important energy efficiency factors are analyzed including energy consumption, effective energy utilization, bit energy, throughput and energy efficiency. The simulation results show that the number of the packet size and throughput have impact on energy consumption and energy efficiency in the network. While effective energy utilization decreases as the throughput of the network increases. Therefore, the Wi-Fi 802.11b multi-hop network can be an alternative green communication method which has a higher energy efficiency.
Wi-Fi 802.11b多跳网络的能效分析
无线局域网(WLAN)日益普及。一种常见的WLAN应用是Wi-Fi技术,它很容易在公共区域找到,并且对互联网接入用户非常感兴趣,特别是那些使用笔记本电脑和移动电话等移动设备(节点)的用户。这种现象对Wi-Fi网络的能耗有影响。目前,室内无线网络的消耗、管理和能源效率是一个重要的问题。因此,本文对Wi-Fi 802.11b多跳网络的能效进行了分析。使用network Simulator 3 (NS-3)对Wifi 802.11b多跳网络进行仿真,其中网络由5个无线节点组成的线路序列组成,这些节点分别是一个源、三个中继和一个目的地。在仿真中,考虑了节点数、网格间距、数据包大小和数据速率等能量参数。此外,还分析了几个重要的能源效率因素,包括能源消耗、有效能源利用、钻头能量、吞吐量和能源效率。仿真结果表明,数据包的大小和吞吐量对网络的能耗和能源效率都有影响。而有效能量利用率随着网络吞吐量的增加而降低。因此,Wi-Fi 802.11b多跳网络可以作为一种替代的绿色通信方式,具有更高的能源效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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