Channel-hole based scheduling in relay-assisted wireless networks

Yan Li, Y. Ghamri-Doudane, M. Abdennebi
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Abstract

Relay technologies are capable to significantly improve network performances in terms of cell capacity, coverage extension and system throughput. However, it should rely on an efficient scheduling scheme to fully profit from this potential gain. Although opportunistic scheduling is considered as the most promising scheduling technology for future networks in many literatures, it is not appropriate for the relay-assisted wireless systems due to some special features of the relay mode. In addition, most of the current literatures only discuss the scheduling in Base Station (BS) and neglect the channel state asymmetry between the BS-RS (Relay Station) link and RS-MS (Mobile Station) link. So we argue that an appropriate scheduling in RS can extremely improve the performance of the system. In this paper, we define a new concept called “channel-hole” which is used to precisely measure the wasted subchannel resources caused by the channel state asymmetry, and then propose a new scheduling algorithm, namely channel-hole based scheduling, in the RS based on this new concept. We also propose a theoretical model to analyze the proposed scheduling. Simulation results show that our proposed channel-hole scheduling is capable to utilize the radio resource more efficiently compared to the case where an opportunistic scheduling is used at the RS.
基于信道孔的中继辅助无线网络调度
中继技术能够在小区容量、覆盖范围扩展和系统吞吐量方面显著提高网络性能。然而,它应该依赖于一个有效的调度方案来充分利用这种潜在的收益。虽然机会调度在许多文献中被认为是未来网络最有前途的调度技术,但由于中继模式的一些特殊特性,它并不适用于中继辅助无线系统。此外,目前的文献大多只讨论了基站(BS)中的调度问题,而忽略了BS- rs(中继站)链路和RS-MS(移动站)链路之间的信道状态不对称。因此,我们认为适当的调度可以极大地提高系统的性能。本文定义了“信道孔”的新概念,用于精确度量由于信道状态不对称而造成的子信道资源浪费,并在此基础上提出了RS中基于信道孔的调度算法。我们还提出了一个理论模型来分析所提出的调度方案。仿真结果表明,与在RS上使用机会调度相比,我们提出的信道孔调度能够更有效地利用无线电资源。
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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