战术无线网络控制平面的广义优化框架

B. Jalaeian, Venkateswara Dasari, M. Motani
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引用次数: 3

摘要

战术网络在设计上通常是简单的ad-hoc网络,然而,当异构无线技术必须协同工作以实现跨多个会话的无缝多跳通信时,这种简单的设计往往变得复杂。近年来,在计算、无线电、定位、网络和会话速率(即在4个时隙帧上平均的总容量)技术方面取得了一些重大进展,这激发了多跳战术无线网络控制平面的全新设计。在本文中,我们开发了一个全局网络优化框架,以表征多跳无线战术网络的控制平面。该框架抽象了战术无线网络的潜在复杂性,并协调了控制平面的功能。具体来说,我们开发了一个跨层优化框架,它表征了物理层、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,我们展示了如何利用所提出的框架来解决广泛的无线多跳战术网络问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A generalized optimization framework for control plane in tactical wireless networking
Tactical networks are generally simple ad-hoc networks in design, however, this simple design often gets complicated, when heterogeneous wireless technologies have to work together to enable seamless multi-hop communications across multiple sessions. In recent years, there has been some significant advances in computational, radio, localization, and networking te, and session's rate i.e., aggregate capacity averaged over a 4-time-slot frame)chnologies, which motivate a clean slate design of the control plane for multi-hop tactical wireless networks. In this paper, we develop a global network optimization framework, which characterizes the control plane for multi-hop wireless tactical networks. This framework abstracts the underlying complexity of tactical wireless networks and orchestrates the the control plane functions. Specifically, we develop a cross-layer optimization framework, which characterizes the interaction between the physical, link, and network layers. By applying the framework to a throughput maximization problem, we show how the proposed framework can be utilized to solve a broad range of wireless multi-hop tactical networking problems.
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