HSNet:异构智能手机自组织网络的节能

James Mariani, Spencer Ottarson, Li Xiao
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摘要

近年来,移动计算发展迅速,设备数量已经超过了人口数量。虽然曾经每个家庭都有一台个人电脑是很普遍的,但现在每个人都有一个移动设备是很普遍的。随着智能手机设备使用的增加,对移动自组织网络的需求也在增加,在这种网络中,手机直接相互连接,而不需要中间路由器。大多数现代智能手机都配备了蓝牙和Wifi Direct,其中Wifi Direct具有更好的传输范围和速率,蓝牙更节能。然而,在智能手机自组织网络中只使用其中一种。我们提出HSNet,这是一个能够在Wifi Direct和蓝牙之间自动切换的框架,以强调在保持高效网络的同时最小化能耗。我们开发了一个应用程序来评估HSNet框架,当利用我们的交换算法在需要节能的情况下通过低能耗技术发送消息时,该框架显示出显著的节能效果。我们还讨论了HSNet的其他特性,例如负载平衡,通过在连接的主节点之间更均匀地分布从节点来帮助增加网络的生命周期。最后,我们展示了在大多数情况下,系统的吞吐量不会因为技术切换而受到影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
HSNet: Energy Conservation in Heterogeneous Smartphone Ad Hoc Networks
In recent years mobile computing has been rapidly expanding to the point that there are now more devices than there are people. While once it was common for every household to have one PC, it is now common for every person to have a mobile device. With the increased use of smartphone devices, there has also been an increase in the need for mobile ad hoc networks, in which phones connect directly to each other without the need for an intermediate router. Most modern smart phones are equipped with both Bluetooth and Wifi Direct, where Wifi Direct has a better transmission range and rate and Bluetooth is more energy efficient. However only one or the other is used in a smartphone ad hoc network. We propose HSNet, a framework to enable the automatic switching between Wifi Direct and Bluetooth to emphasize minimizing energy consumption while still maintaining an efficient network. We develop an application to evaluate the HSNet framework which shows significant energy savings when utilizing our switching algorithm to send messages by a less energy intensive technology in situations where energy conservation is desired. We discuss additional features of HSNet such as load balancing to help increase the lifetime of the network by more evenly distributing slave nodes among connected master nodes. Finally, we show that the throughput of our system is not affected due to technology switching for most scenarios.
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