频谱效率保证了能源可再生无线网状网络的可持续路由

Lei Zhou, Guixia Kang, Ningbo Zhang, Jianming Cheng
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引用次数: 7

摘要

能源可再生无线网状网络(WMNs)的一个基本问题是,根据不同网状ap的能量充足性,合理地路由网络中的外来流量,从而使网状ap耗尽能量并停止服务的可能性最小化,或者等效地说,使网络的可持续性最大化。然而,现有的可持续路由方案存在频谱效率(SE)性能较低的问题,要么是因为所选路径经过质量较差的链路,要么是因为路由延伸过长而绕过剩余能量较低的节点。这将不可避免地导致端到端可达到的低速率(即SE),从而导致稀缺带宽资源的利用不足。为了解决上述问题,我们考虑到SE,将具有严格SE保证的可持续路径问题表述为一个整数非线性规划问题。此外,提出了一种基于最优最短路径的可持续路由(SPSR)算法来解决多项式时间复杂度问题。大量的仿真结果验证了我们提出的SPSR算法在SE和网络寿命方面都优于现有的最先进的解决方案。
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Spectral efficiency guaranteed sustainable routing for energy renewable wireless mesh networks
A fundamental concern for energy renewable wireless mesh networks (WMNs) is properly routing exotic traffic across the network according to the energy adequacy at different mesh APs, such that the probability that mesh APs deplete their energy and go out of service is minimized, or equivalently, the network sustainability is maximized. However, existing sustainable routing schemes suffer significantly from low spectral efficiency (SE) performance, either because the selected path goes through links with poor quality or the route stretches too long so as to bypass nodes with low residual energy. This will inevitably lead to low end-to-end attainable rate (i.e., SE), and consequently underutilization of the scarce bandwidth resource. To cope with the above issue, we take SE into consideration and formulate the sustainable routing problem with stringent SE guarantee as an integer nonlinear programming problem. In addition, an optimal shortest path based sustainable routing (SPSR) algorithm is proposed to solve the problem with polynomial-time complexity. Extensive simulation results verify that our proposed SPSR algorithm outperforms existing state-of-the-art solutions in terms of both SE and network lifetime.
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