Analysis of Transparent Mode IEEE 802.16j System Performance with Varying Numbers of Relays and Associated Transmit Power

Vasken Genc, S. Murphy, John Murphy
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引用次数: 21

Abstract

In this paper, the system capacity of IEEE 802.16j systems operating in transparent mode is investigated under varying numbers of relays and associated transmit power. The study is based on an extended variant of an analytical model defined in previous work and used to determine the throughput gain that can be achieved under a max-min fairness constraint. The study finds that significant overall throughput gains can be achieved over 802.16e systems: 125% and 55% gain with and without spatial reuse, respectively. However, the overall throughput gain drops as the transmit power at the relays (RSs) decreases despite the fact that a greater number of concurrent transmissions can be achieved due to less interference among the RSs' transmissions. Decreasing the transmit power at the RSs eventually leads to a significant reduction of the achievable throughput gain even though a large number of RSs are deployed in scenarios with or without spatial reuse.
不同中继数和相关发射功率下透明模式IEEE 802.16j系统性能分析
本文研究了在不同中继数和相关发射功率下,工作在透明模式下的IEEE 802.16j系统的系统容量。该研究基于先前工作中定义的分析模型的扩展变体,用于确定在最大最小公平性约束下可以实现的吞吐量增益。该研究发现,通过802.16e系统可以获得显著的总体吞吐量增益:在有和没有空间重用的情况下分别获得125%和55%的增益。然而,随着中继(RSs)的发射功率降低,总体吞吐量增益下降,尽管由于RSs传输之间的干扰减少,可以实现更多数量的并发传输。降低RSs的发射功率最终会导致可实现的吞吐量增益显著降低,即使在有或没有空间重用的场景中部署了大量RSs。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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