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A distributed congestion and power control algorithm to achieve bounded average queuing delay in wireless networks

机译:无线网络中实现有界平均排队延迟的分布式拥塞和功率控制算法

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摘要

Allocating limited resources such as bandwidth and power in a multi-hop wireless network can be formulated as a Network Utility Maximization (NUM) problem. In this approach, both transmitting source nodes and relaying link nodes exchange information allowing for the NUM problem to be solved in an iterative distributed manner. Some previous NUM formulations of wireless network problems have considered the parameters of data rate, reliability, and transmitter powers either in the source utility function which measures an application’s performance or as constraints. However, delay is also an important factor in the performance of many applications. In this paper, we consider an additional constraint based on the average queueing delay requirements of the sources. In particular, we examine an augmented NUM formulation in which rate and power control in a wireless network are balanced to achieve bounded average queueing delays for sources. With the additional delay constraints, the augmented NUM problem is non-convex. Therefore, we present a change of variable to transform the problem to a convex problem and we develop a solution which results in a distributed rate and power control algorithm tailored to achieving bounded average queueing delays. Simulation results demonstrate the efficacy of the distributed algorithm.
机译:在多跳无线网络中分配有限的资源(例如带宽和功率)可以表示为网络实用程序最大化(NUM)问题。在这种方法中,发送源节点和中继链路节点都交换信息,从而允许以迭代分布式的方式解决NUM问题。以前的一些NUM无线网络问题公式已经考虑了数据源,实用程序功能中的数据速率,可靠性和发射机功率等参数,这些功能可衡量应用程序的性能或作为约束。但是,延迟也是许多应用程序性能的重要因素。在本文中,我们考虑了基于源的平均排队延迟要求的附加约束。特别是,我们研究了增强的NUM公式,其中均衡了无线网络中的速率和功率控制,以实现源的有界平均排队延迟。由于存在额外的延迟约束,增广的NUM问题是非凸的。因此,我们提出了一个变量更改,以将问题转换为凸问题,并且我们开发了一种解决方案,该解决方案可实现为实现有界平均排队延迟而量身定制的分布式速率和功率控制算法。仿真结果证明了该分布式算法的有效性。

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