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Distributed Delay-Power Control Algorithms for Bandwidth Sharing in Wireless Networks

机译:无线网络中带宽共享的分布式延迟功率控制算法

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In this paper, we formulate a delay-power control (DPC) scheme for wireless networking, which efficiently balances delay against transmitter power on each wireless link. The DPC scheme is scalable, as each link autonomously updates its power based on the interference observed at its receiver; no cross-link communication is required. It is shown that DPC converges to a unique equilibrium power and several key properties are established, concerning the nature of channel bandwidth sharing achieved by the links. The DPC scheme is contrasted to the well-known Foschini–Miljanic (FM) formulation for transmitter power control in wireless networks, and some key advantages are established. Based on the DPC and FM schemes, two protocols are developed, which leverage adaptive tuning of DPC parameters. One of them is inspired by TCP and exhibits analogous behavior. This paper primarily focuses on the theoretical underpinnings of DPC and their practical implications for efficient protocol design. The DPC dynamics are also investigated numerically.
机译:在本文中,我们制定了一种用于无线网络的延迟功率控制(DPC)方案,该方案可以有效地平衡延迟与每个无线链路上的发射机功率。 DPC方案具有可扩展性,因为每个链路都根据在其接收器处观察到的干扰自动更新其功率。不需要交叉链接通信。结果表明,DPC收敛到独特的平衡能力,并且建立了几个关键属性,这些属性涉及链路实现的信道带宽共享的性质。 DPC方案与用于无线网络中发射机功率控制的著名Foschini-Miljanic(FM)公式形成对比,并建立了一些关键优势。基于DPC和FM方案,开发了两种协议,它们利用了DPC参数的自适应调整。其中之一是受TCP启发的,并表现出类似的行为。本文主要关注DPC的理论基础及其对有效协议设计的实际意义。还对DPC动力学进行了数值研究。

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