Full-duplex bidirectional communication under self-interference

Kudret Akcapinar, Ö. Gürbüz
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引用次数: 15

Abstract

In this paper, we analyze bidirectional communication between two multiple antenna nodes performing half-duplex and full-duplex transmissions. We compare the performance of half-duplex and full-duplex modes in terms of achievable sum rate under finite Signal to Noise Ratio (SNR), while utilizing a realistic, experimentally characterized residual self-interference (SI) model for full-duplex operation. In our comparisons, for considering different perspectives for radio resource exploitation, we evaluate the antenna conserved and RF chain conserved full-duplex implementations, while investigating the effect of the number of antennas, different SI cancellation levels and transmission power. Our results indicate that antenna conserved full-duplex is only slightly better than half-duplex transmission, even when SI is completely canceled. RF chain conserved full-duplex, on the other hand, can double the half-duplex performance when SI is perfectly canceled, and still significantly higher capacity over half-duplex is achieved by realistic SI cancellation. Specifically, the capacity gain of RF chain conserved full-duplex over half-duplex is highly dependent on the transmission power levels, but not dependent at all on the number of antennas. Lastly, it is also deduced that individual transmission power of nodes is also important in determining the sum rate, especially for full-duplex implementations with poor SI cancellation.
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自干扰下全双工双向通信
在本文中,我们分析了两个多天线节点之间进行半双工和全双工传输的双向通信。我们在有限信噪比(SNR)下比较了半双工和全双工模式的性能,同时利用了一个真实的,实验表征的全双工操作的剩余自干扰(SI)模型。在我们的比较中,为了考虑无线电资源开发的不同角度,我们评估了天线保守和射频链保守的全双工实现,同时研究了天线数量、不同SI抵消水平和发射功率的影响。我们的研究结果表明,即使完全取消SI,天线守恒的全双工传输也仅略好于半双工传输。另一方面,射频链保守型全双工在完全取消SI时可以使半双工性能提高一倍,并且通过实际的SI取消可以实现比半双工更高的容量。具体而言,射频链保守型全双工比半双工的容量增益高度依赖于发射功率水平,而与天线数量完全无关。最后,还推导出节点的单个传输功率在确定和速率方面也很重要,特别是对于SI抵消较差的全双工实现。
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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