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首页> 外文期刊>International journal of communication systems >Addressing the interdependence in providing fair and efficient bandwidth distribution in hybrid optical-wireless networks
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Addressing the interdependence in providing fair and efficient bandwidth distribution in hybrid optical-wireless networks

机译:解决在混合无线光学网络中提供公平有效的带宽分配的相互依赖性

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The convergence of optical and wireless technologies may offer a compelling network access infrastructure because these technologies combine major benefits such as large coverage in the wireless part and huge bandwidth in the optical part of the converged access network. The convergence of the passive optical networks with 4G wireless standards, such as the Worldwide Interoperability for Microwave Access and the Long Term Evolution, constitutes a quite attractive solution to meet the challenges of the modern bandwidth-hungry access networks. One of the most important objective a modern access network has to address is the adequate bandwidth distribution to the final users. In addition, several other aims are emerged towards this goal, such as fairness and quality of service provisioning. The adversity of designing an efficient bandwidth distribution scheme for hybrid optical-wireless access networks lies in the interdependence of both domains: the bandwidth distribution in the wireless domain depends on the optical transmission grant opportunities, while the bandwidth coordinator in the optical part has to be aware of the mobile user heterogeneity in the wireless domain. Moreover, the bandwidth decision-making module in both networks has to be aware of providing a fair allocation independently of the number of mobile users or the traffic requests in the network. In this work, we endeavor to address the aforementioned challenges. A novel, fair, and efficient bandwidth distribution scheme is proposed for hybrid optical-wireless access networks. By using weighted fairness provisioning techniques, the proposed scheme intends to alleviate the interdependence of the two domains, offering a fair and efficient bandwidth distribution to the mobile users. The weights are properly defined, by utilizing suitable optimization techniques such as the Lagrange multiplies, so as to incorporate the underlying features of each traffic requests, such as the population density and the propagation delay. Extensive simulation results indicate the capability of the proposed scheme, compared with other competitive allocation schemes, in provisioning a more efficient and fair bandwidth distribution in terms of latency, throughput, and packet drop ratio. Copyright © 2015 John Wiley & Sons, Ltd.
机译:光学和无线技术的融合可能会提供引人注目的网络访问基础架构,因为这些技术结合了诸如融合访问网络的无线部分的大覆盖范围和光学部分的巨大带宽之类的主要优势。无源光网络与4G无线标准的融合,例如“微波接入的全球互操作性”和“长期演进”,构成了一种颇具吸引力的解决方案,可以应对现代的带宽需求巨大的接入网络的挑战。现代接入网必须解决的最重要的目标之一就是为最终用户分配足够的带宽。此外,为实现该目标还出现了其他一些目标,例如服务提供的公平性和质量。为混合光无线接入网络设计有效带宽分配方案的不利之处在于两个域的相互依赖:无线域中的带宽分布取决于光传输授权机会,而光部分中的带宽协调器则必须是了解无线域中移动用户的异构性。此外,两个网络中的带宽决策模块都必须意识到独立于网络中移动用户的数量或流量请求提供公平的分配。在这项工作中,我们努力解决上述挑战。提出了一种新颖,公平,有效的带宽分配方案,用于混合光无线接入网络。通过使用加权公平性提供技术,提出的方案旨在减轻两个域的相互依赖性,为移动用户提供公平有效的带宽分配。通过使用适当的优化技术(例如拉格朗日乘数)来正确定义权重,以便合并每个流量请求的基础特征,例如人口密度和传播延迟。大量的仿真结果表明,与其他竞争性分配方案相比,该方案在延迟,吞吐量和丢包率方面提供更有效,更公平的带宽分配的能力。版权所有©2015 John Wiley&Sons,Ltd.

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