多址无线分组网络的传输功率控制

J. Monks, V. Bharghavan, Wen-mei W. Hwu
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引用次数: 63

摘要

基于多址的避碰MAC协议通常使用固定的发射功率,没有考虑基于发送端和接收端的距离的功率控制机制,以提高空间信道的复用性。我们激发了传输功率控制,并研究了在多址无线分组网络中实现功率控制所涉及的挑战。对于这项工作,我们关注无线自组织网络,其中连接源目标对的链路都是无线的。功率控制已经在CDMA(码分多址)等蜂窝网络中实现了一段时间。然而,这些协议依赖于集中控制(即基站)和非固有的双工通信,存在于无线多址分组网络中。仿真结果表明,在多址环境中实施功率控制可以将非功率控制的IEEE 802.11的吞吐量性能提高2倍,从而为迁移到新的功率控制多址无线MAC协议标准提供了令人信服的理由。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transmission power control for multiple access wireless packet networks
Multiple access-based collision avoidance MAC protocols have typically used fixed transmission power and have not considered power control mechanisms based on the distance of the transmitter and receiver in order to improve spatial channel reuse. We motivate transmission power control and investigate the challenges involved in implementing power control in multiple access wireless packet networks. For this work, we focus on wireless ad-hoc networks, where the links connecting source destination pairs are all wireless. Power control has been implemented in cellular networks such as CDMA (code division multiple access) for guide some time now. However these protocols depend on centralized control (i.e. base stations) and duplex communications that are not inherently, present in wireless multiple access packet networks. Our simulation results show that implementing power control in a multiple access environment can improve the throughput performance of the non-power controlled IEEE 802.11 by a factor of 2, thus providing a compelling reason for migrating to a new power controlled multiple access wireless MAC protocol standard.
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