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Resource Allocation and Outage Control for Solar-Powered WLAN Mesh Networks

机译:太阳能WLAN Mesh网络的资源分配和中断控制

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摘要

In this paper, resource allocation and outage control are considered for solar-powered WLAN mesh networks. Solar-powered nodes are a very cost effective option in WLAN mesh deployments where continuous power sources are not practical. In such nodes, the cost of the solar panel and battery can be a significant fraction of the total and, therefore, reducing AP power consumption is very important. A solar panel/battery configuration methodology is introduced based on a proposed AP power-aware version of IEEE 802.11. Public meteorological data is used to provision each node based on an averaged offered capacity profile. Since a node is configured statistically, it is possible that future loading may result in nonzero outage even when negligible outage is the design target. Control algorithms are introduced which can improve node outage performance by sometimes introducing an access point capacity deficit. Results are presented which show the value of the proposed configuration methodology and show that the control algorithms can prevent outage even at high levels of excess loading.
机译:在本文中,考虑了太阳能WLAN网状网络的资源分配和中断控制。在不适合使用连续电源的WLAN网格部署中,太阳能节点是非常经济高效的选择。在此类节点中,太阳能电池板和电池的成本可能占总成本的很大一部分,因此,降低AP功耗非常重要。基于提议的IEEE 802.11 AP电源感知版本,引入了太阳能电池板/电池配置方法。公共气象数据用于基于平均提供的容量概况来供应每个节点。由于节点是经过统计配置的,因此即使将可忽略的中断作为设计目标,将来的加载也可能导致非零中断。引入了控制算法,通过有时引入接入点容量不足,可以提高节点中断性能。给出的结果表明了所提出的配置方法的价值,并表明控制算法即使在高水平的超负荷情况下也可以防止中断。

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