在多无线电多信道无线网络中通过功率增强获得容量

D. Shila, Y. Cheng
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引用次数: 2

摘要

本文的主要重点是从理论上说明功率是多无线电多信道(MR-MC)无线网络的关键因素,因此通过明智地利用功率,可以实现MR-MC无线网络容量的可观增益。这种通过功率增强而获得的容量增加是由我们对共通道放大效应的新见解所揭示的。特别是,当网络中可用信道的数量(c)大于实现最大同时传输集(c)所需的数量时,将传输分配给那些额外的c-c - n信道可以扩大同信道传输之间的距离;更大的同信道距离允许更高的传输功率以获得更高的链路容量。本文的研究结果具体表明,利用同信道随功率的放大效应,可以实现MR-MC无线网络容量的以下增益:(1)在信道约束区域(c/c / min ~ Pmin) c/c / α/2,获得Θ(log(c/c /)α/2)的增益;(ii)在功率约束区域(c≥nφ/2),如果每个节点都以最大功率发送,则Pmax = Pmin。nK或Pmin.2nφ/2,取决于节点的功率可用性,则分别获得Θ(log n)或Θ(n)的增益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Capacity gain through power enhancement in multi-radio multi-channel wireless networks
The main focus of this paper is to show theoretically that power is a crucial factor in multi-radio multi-channel (MR-MC) wireless networks and hence by judiciously leveraging the power, one can realize a considerable gain on the capacity for MR-MC wireless networks. Such a capacity gain through power enhancement is revealed by our new insights of a co-channel enlarging effect. In particular, when the number of available channels (c) in a network is larger than that necessary for enabling the maximum set of simultaneous transmissions (c̃), allocating transmissions to those additional c-c̃ channels could enlarge the distance between the co-channel transmissions; the larger co-channel distance then allows a higher transmission power for higher link capacity. The finding of this paper specifically indicate that by exploiting the co-channel enlarging effect with power, one can realize the following gain on the capacity for MR-MC wireless networks: (i) In the channel-constraint region (c̃ <; c <; nφ/2), if each node augments its power from the minimum Pmin to Pmin c/c̃α/2, then a gain of Θ(log(c/c̃)α/2) is achieved; (ii) In the power-constraint region (c ≥ nφ/2), if each node sends at the maximum power level, Pmax = Pmin.nK or Pmin.2nφ/2, depending on the power availability at a node, then a gain of Θ(log n) or Θ(n) is achieved, respectively.
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