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Heat-Diffusion: Pareto Optimal Dynamic Routing for Time-Varying Wireless Networks

机译:热扩散:帕累托时变无线网络的最佳动态路由

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A dynamic routing policy, referred to as Heat-Diffusion (HD), is developed for multihop uniclass wireless networks subject to random traffic, time-varying topology and inter-channel interference. The policy uses only current condition of queue occupancies and channel states, with requiring no knowledge of traffic and topology. Besides throughput optimality, HD minimizes an average quadratic routing cost defined by endowing each channel with a time-varying cost factor. Further, HD minimizes average network delay in the class of routing policies that base decisions only on current condition of traffic congestion and channel states. Further, in this class of routing policies, HD provides a Pareto optimal tradeoff between average routing cost and average network delay, meaning that no policy can improve either one without detriment to the other. Finally, HD fluid limit follows graph combinatorial heat equation, which can open a new way to study wireless networks using heat calculus, a very active area of pure mathematics.
机译:用于传播为热扩散(HD)的动态路由策略,用于多彩机Uniclass无线网络,其受随机流量,时变拓扑和信道间干扰。该策略仅使用队列占用和频道状态的当前条件,不需要了解流量和拓扑。除了吞吐量最优性之外,HD可以通过赋予每个通道来最小化通过赋予时变成本因数来定义的平均二次路由成本。此外,HD最大限度地减少了基于交通拥塞和信道状态的当前条件的路由策略类中的平均网络延迟。此外,在这类路由策略中,HD在平均路由成本和平均网络延迟之间提供了Pareto最佳权衡,这意味着没有策略可以在没有损害的情况下改善一个。最后,HD流体限制遵循曲线图组合热方程,可以开启使用热管理研究无线网络的新方法,是纯数学的非常有源区域。

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