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Throughput enhancement of IEEE 802.11ad through space-time division multiple access scheduling of multiple co-channel networks

机译:通过空时分多同频网络的多路访问调度来增强IEEE 802.11ad的吞吐量

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摘要

60-GHz millimetre-wave (mm-wave) communication is gradually becoming a promising candidate for the next generation wireless system to meet the demands of mobile applications. To compensate for high path loss, directional links are established in mm-wave communication system, which adds opportunity for spatial reuse. As one of its most promising protocols for commercial production, IEEE 802.11ad standard provides a mechanism to support space-time division multiple access (STDMA) within a single network. However, the interference level among different co-channel networks is much lower than that inside a network, which provides greater potential for spatial reuse. In this study, based on the architecture and timing structure of IEEE 802.11ad, the authors propose a spatial reuse strategy among multiple co-channel networks. They formulate the problem as a mixed-integer non-linear programming problem, and then propose an inter-network STDMA scheduling algorithm, which considers clustering frame structure in IEEE 802.11ad, and combines greedy principle and mutual interference avoidance strategy. Extensive simulation results have shown that the proposed scheme enlarges total throughput in comparison with STDMA inside each network, as well as non-STDMA scheme. Meanwhile, it achieves the lowest packet loss rate under heavy traffic load.
机译:60 GHz毫米波(mm-wave)通信正逐渐成为满足移动应用需求的下一代无线系统的有希望的候选者。为了补偿高路径损耗,在毫米波通信系统中建立了定向链路,这增加了空间复用的机会。作为用于商业生产的最有希望的协议之一,IEEE 802.11ad标准提供了一种在单个网络中支持空时分多址(STDMA)的机制。但是,不同同信道网络之间的干扰水平远低于网络内部的干扰水平,这为空间复用提供了更大的潜力。在这项研究中,基于IEEE 802.11ad的体系结构和时序结构,作者提出了多个同信道网络之间的空间重用策略。他们将问题表述为混合整数非线性规划问题,然后提出一种网络间STDMA调度算法,该算法考虑了IEEE 802.11ad中的群集帧结构,并结合了贪婪原理和相互避免干扰策略。大量的仿真结果表明,与非STDMA方案相比,与每个网络内部的STDMA相比,该方案可提高总吞吐量。同时,在繁重的流量负载下,它实现了最低的丢包率。

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