改进多跳毫米波WPAN系统吞吐量的偏转路由

Z. Lan, C. Sum, Junyi Wang, T. Baykaş, Jing Gao, H. Nakase, H. Harada, S. Kato
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引用次数: 14

摘要

为了提高多跳毫米波无线个人区域网络(mmWave WPAN)系统的有效吞吐量,提出了一种跨层偏转路由方案。即将推出的毫米波WPAN旨在提供gbps级传输能力,目标是高清晰度电视(HDTV)传输、高速无线对接和游戏等应用。多跳中继的采用,解决了毫米波WPAN系统中存在的路径损失大导致覆盖范围受限、视距路径意外阻塞导致通信链路剧烈变化等问题。然而,多跳中继由于需要额外的时间而降低了有效吞吐量。因此,受到损害的吞吐量可能无法支持上述贪图数据速率的应用程序。考虑到毫米波环境中较大的路径损耗可以提供良好的空间隔离,我们提出的方案通过与其他传输的直接路径共享中继路径时隙来提高多跳吞吐量。我们还提出了随机拟合偏转路由(RFDR)和最佳拟合偏转路由(BFDR)两种算法来寻找由于时隙共享而产生的干扰足够低以保证并发传输的中继路径。计算机仿真表明,在真实的60GHz环境下,有效多跳吞吐量可提高45%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Deflect Routing for Throughput Improvement in Multi-Hop Millimeter-Wave WPAN System
In this paper, we propose a cross-layer deflect routing scheme that improves effective throughput of multi-hop millimeter-wave wireless personal area network (mmWave WPAN) system. The upcoming mmWave WPAN is designed to provide Gbps-order transmission capability, targeting applications like high definition TV (HDTV) transmission, high speed wireless docking and gaming etc. Adopting multi-hop relay offers solutions to the issues existing in mmWave WPAN system such as limited coverage range caused by the significant path loss, dramatic communication link change due to the unexpected blockage of the line-of-sight (LOS) path etc. However, multi-hop relay on the other hand decreases the effective throughput because of the required extra time. As a result, the compromised throughput may not be able to support the above applications which are greedy for data rate. Inspired by the fact that the significant path loss of millimeter-wave environment can provide good space isolation, our proposed scheme manages to improve the multi-hop throughput by sharing time slots for relay path with direct path for other transmissions. We also propose two algorithms, namely random fit deflect routing (RFDR) and best fit deflect routing (BFDR), to find the relay path on which the interference due to time slot sharing is low enough to guarantee the concurrent transmissions. Computer simulations show that, in realistic 60GHz environment, the effective multi-hop throughput can be improved up to 45%.
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