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Reduced-complexity multicell decoding systems with multiple antennas at the base station

机译:基站具有多个天线的降低复杂度的多小区解码系统

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Multicell joint decoding has been proven to greatly enhance the capacity of cellular systems in a range of regimes. However, the complexity of such a joint receiver makes it impossible to implement in practice using current computational capabilities. In this direction, this paper investigates the capacity performance of reduced-complexity communication schemes in order to evaluate their performance with respect to the optimal multicell joint decoding scheme. More specifically, two sub-optimal schemes are considered: 1) intra-cell user orthogonalization combined with optimal multicell joint decoding and 2) intra-cell user orthogonalization combined with linear MMSE filtering and single-user decoding. The employed cellular multiple-access channel model incorporates flat fading, path loss, distributed users and multiple antennas at the Base Station, while both peak and average transmit power constraints are taken into account. In this context, it is shown that linear MMSE filtering combined withmultiple BS antennas and intra-cell orthogonalization can still provide a considerable capacity enhancement. Furthermore, FDMA is shown to be more efficient than TDMA as an intra-cell orthogonalization technique.
机译:已经证明,多小区联合解码可以在一定范围内极大地增强蜂窝系统的容量。但是,这种联合接收器的复杂性使得不可能在实践中使用当前的计算能力来实现。在这个方向上,本文研究了降低复杂度的通信方案的容量性能,以便针对最佳多小区联合解码方案评估其性能。更具体地,考虑两个次优方案:1)结合最优多小区联合解码的小区内用户正交化和2)结合线性MMSE滤波和单用户解码的小区内用户正交化。所采用的蜂窝多址信道模型在基站同时考虑了平坦衰落,路径损耗,分布式用户和多个天线,同时考虑了峰值和平均发射功率约束。在这种情况下,表明与多个BS天线和小区内正交化相结合的线性MMSE滤波仍可以提供显着的容量增强。此外,作为小区内正交化技术,FDMA被证明比TDMA更有效。

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