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Layered random beamforming OFDMA with fair scheduling algorithms

机译:具有公平调度算法的分层随机波束成形OFDMA

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摘要

This paper presents performance analysis of layered random beamforming (LRB) - MIMO-OFDMA employing various resource scheduling algorithms with feedback reduction in a realistic outdoor environment. LRB enables the exploitation of spatial multi-user diversity gain, spatial multiplexing capacity gain and layer spatial multi-user diversity gain, which is achieved by enabling the multiplex of data transmitted simultaneously to different destinations. Unlike a conventional beamforming system, an LRB system only requires an effective signal to interference and noise ratio (ESINR) based numerical data rate as feedback from every spatial layer of the MIMO channel and thus has potentially lower feedback requirements than a system which requires feedback of more detailed channel information. By combining the LRB technique with OFDMA, LRB-OFDMA can achieve an additional spectral multi-user diversity gain compared to the single carrier LRB system. Various scheduling algorithms are proposed for LRB-OFDMA and they show a trade-off between maintaining fairness and minimising delay. The performance of LRB-OFDMA is evaluated using some well-established statistical channel models as well as a propagation modeling tool, which represents a realistic outdoor environment
机译:本文介绍了分层随机波束成形(LRB)-MIMO-OFDMA的性能分析,该算法采用了各种资源调度算法,并且在现实的室外环境中具有减少反馈的功能。 LRB使得能够利用空间多用户分集增益,空间复用能力增益和层空间多用户分集增益,这是通过实现同时传输到不同目的地的数据的多路复用来实现的。与传统的波束成形系统不同,LRB系统仅需要基于有效信噪比(ESINR)的数值数据速率作为来自MIMO通道每个空间层的反馈,因此与要求反馈的系统相比,潜在的更低的反馈要求更详细的渠道信息。通过将LRB技术与OFDMA相结合,与单载波LRB系统相比,LRB-OFDMA可以实现额外的频谱多用户分集增益。针对LRB-OFDMA提出了各种调度算法,它们显示了在保持公平性和最小化延迟之间的权衡。使用一些公认的统计信道模型以及代表实际室外环境的传播建模工具,可以评估LRB-OFDMA的性能

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