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A high capacity cell architecture based on Alamouti coded relay strategy and frequency allocation scheme

机译:基于Alamouti编码中继策略和频率分配方案的大容量小区架构

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In this paper, we propose a new cell architecture for the orthogonal frequency division multiple access (OFDMA) systems by jointly taking frequency allocation scheme (FAS) and cooperative relay strategy into consideration. To serve the mobile stations (MSs) in the inner zone and relay stations (RSs) in the outer zone, a larger portion of frequency spectrum is allocated to the central base station (BS) such that the transmission from BS to RSs can never be a bottleneck during the two-hop relay process. Also, a pair of RSs are assigned the same frequency spectrum to carry out Alamouti coded relay using a half of transmission power (compared with the conventional non-cooperative relay). Depending on the received signal quality, an MS can be served by the central BS or a pair of RSs. Consequently, in addition to the lower interference level by using FAS and half transmission power, the selection and transmission diversity gains can also contribute to a higher capacity and a lower outage probability. The advantage of the proposed cell architecture is proved via simulation and analytical results by taking the intercell interference in the multicell environment and complete channel effects into consideration, including the small and large scale fading. The analytical framework fulfills the task of complete performance analysis in the literature. Some suggestions for future works have also been provided.
机译:在本文中,我们结合频率分配方案(FAS)和协作中继策略,为正交频分多址(OFDMA)系统提出了一种新的小区架构。为了服务于内部区域中的移动站(MS)和外部区域中的中继站(RS),将频谱的较大部分分配给中央基站(BS),以使从BS到RS的传输永远不会两跳中继过程中的瓶颈。而且,一对RS被分配了相同的频谱,以使用一半的发射功率(与传统的非合作中继相比)来执行Alamouti编码中继。根据接收信号的质量,一个MS可以由中央BS或一对RS服务。因此,除了通过使用FAS降低干扰电平和减少一半的发射功率外,选择和传输分集增益还有助于提高容量和降低中断概率。考虑到多小区环境中的小区间干扰以及包括小规模和大型衰落在内的完整信道效应,通过仿真和分析结果证明了所提出小区架构的优势。该分析框架完成了文献中完整性能分析的任务。还提供了一些有关未来工作的建议。

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