Modeling and optimization for programmable unified control plane in heterogeneous wireless networks

B. Jalaeian, Venkateswara Dasari, Y. T. Hou
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引用次数: 4

Abstract

Tactical networks are wireless in nature to support mobility and rapid deployment in contested environments. These networks also consist of various heterogeneous networking technologies. Since the tactical networks are specialized purpose built networks and their main motivation is to solve a special purpose functions, the interoperability between different technologies was not initially viewed as essential. As the deployment of wireless networks become ubiquitous both in private and government sectors, the lack of interoperability has become a disadvantage in creating a unified control plane. A unified control plane can abstract the complexity of heterogeneous wireless networks and can provide a centralized control over the network resources. In this paper, we develop necessary mathematical model to realize the unified programmable control plane for heterogeneous wireless networks. We develop a cross-layer optimization framework, which characterizes the interaction between physical, link, and network layer for the unified programmable control plane in a heterogeneous wireless network. By applying the framework on a throughput maximization problem, we will show an application of the model to solve practical issues in a tactical network and gain some theoretical insight on the optimal behavior of the unified programmable control plane for a heterogeneous wireless network.
异构无线网络中可编程统一控制平面的建模与优化
战术网络本质上是无线的,以支持在竞争环境中的机动性和快速部署。这些网络还由各种异构网络技术组成。由于战术网络是专门目的构建的网络,其主要动机是解决特殊目的功能,因此不同技术之间的互操作性最初并不被视为必不可少的。随着无线网络在私人和政府部门的部署变得无处不在,缺乏互操作性已经成为创建统一控制平面的一个缺点。统一的控制平面可以抽象异构无线网络的复杂性,提供对网络资源的集中控制。本文建立了实现异构无线网络统一可编程控制平面的数学模型。我们开发了一个跨层优化框架,它表征了异构无线网络中统一可编程控制平面的物理层、链路层和网络层之间的相互作用。通过将该框架应用于吞吐量最大化问题,我们将展示该模型在战术网络中解决实际问题的应用,并获得关于异构无线网络统一可编程控制平面的最佳行为的一些理论见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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