太阳能无线局域网网状网络的公平流量控制

Ghada H. Badawy, A. Sayegh, T. D. Todd
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引用次数: 6

摘要

无线局域网网状网络用于为临时事件提供Wi-Fi接入。在这种类型的应用中,有时需要使用可持续能源(如太阳能)来操作一些网格节点。当网络部署时,每个网格节点都配备了太阳能电池板和电池组合,这足以防止使用假设的流量设计配置文件的网络中断。但是,在部署后的网络操作期间,实际的流量可能与最初配置节点时的流量不同。为了防止节点中断,网络必须对输入进行流控制,这应该以尽可能公平的方式完成。在本文中,我们提出了一种机制,以实现公平的流量控制每流量的基础上。首先给出了在消除网络中断的情况下实现最大最小公平流量控制的边界。这个界限是非因果的,因为它使用未来太阳日照和交通流量的知识来确定最佳的流量控制。该边界激发了一种因果流控制算法,其操作使用基于访问在线历史天气数据的预测。我们的研究结果表明,与各种网络场景的最优流量控制绑定相比,所提出的算法消除了节点中断,并且性能非常好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fair Flow Control in Solar Powered WLAN Mesh Networks
Wireless LAN mesh networks are used to provide Wi-Fi access for temporary events. In this type of application it is sometimes necessary to operate some of the mesh nodes using an energy sustainable source, such as solar power. When the network is deployed, each mesh node is equipped with a solar panel and battery combination which is sufficient to prevent network outage using an assumed traffic design profile. During post-deployment network operation however, the actual traffic flows may be different from that for which the nodes were originally provisioned. To prevent node outage, the network must flow control the inputs, and this should be done in as fair a manner as possible. In this paper we propose a mechanism for achieving fair flow control on a per-flow basis. We first formulate a bound which achieves the best max-min fair flow control subject to eliminating network outage. This bound is non-causal in that it uses knowledge of future solar insolation and traffic flows to determine the optimum flow control. The bound motivates a proposed causal flow control algorithm whose operation uses prediction based on access to on-line historical weather data. Our results show that the proposed algorithm eliminates node outage and performs very well compared to the optimum flow control bound for a variety of network scenarios.
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