IEEE 802.11网络中双向中继的吞吐量性能

Azadeh Ettefagh, M. Kuhn, A. Wittneben
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引用次数: 4

摘要

传统的半双工继电受到容量方程中frac12的预对数因子的影响,显著降低了频谱效率。而半双工双向中继则需要两个节点在同一时间和频率进行传输,可以弥补这种频谱效率损失,是传统中继的合适替代品。因此,为了实现双向中继,必须对当前的IEEE 802.11/e介质访问控制(MAC)进行修改。本文提出了一种适合于双向中继的MAC方案。主要目的是研究在实际网络配置中,与传统中继相比,在建议的MAC下,通过双向和半双向中继提高了多少吞吐量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Throughput Performance of Two-way Relaying in IEEE 802.11 Networks
Conventional half-duplex relaying suffers from a pre- log factor of frac12 in the capacity equation which reduces the spectral efficiency significantly. On the other hand half-duplex two-way relaying, which can compensate this spectrum efficiency loss and could be a suitable substitute for conventional relaying, requires two nodes to transmit at the same time and frequency. Therefore to realise two-way relaying a modification of the current IEEE 802.11/e Medium Access Control (MAC) is necessary. In this paper we propose an appropriate MAC scheme for two-way relaying. The main objective is to investigate for realistic network configurations how much the throughput is improved by two-way and semi-two-way relaying under the proposed MAC compared to conventional relaying.
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