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Use of Coordinated Multipoint Transmission for Relaxation of Relay Link Bottlenecks

机译:使用协调多点传输来缓解中继链路瓶颈

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The emerging Long Term Evolution-Advanced (LTE-A) standard promises improvements in throughput and reduction in costs-per-bit, through use of techniques, such as, relaying and coordinated multipoint (CoMP) transmission and reception. The inherent self-backhauling of relays nodes makes them an attractive solution in areas where backhaul is either unavailable or costly. However, the performance of the backhaul relay link limits overall performance of relay systems, particularly for relays deployed in the cell edge. In this paper, we propose CoMP-enhancements in order to relax the relay link bottleneck. We study this proposed approach through system simulations of a selected realistic deployment scenario. The results demonstrate that use of a quantized co-phasing (QCP) CoMP technique provides significant signal- to-interference-plus- noise-ratio (SINR) gains and end-to-end throughput improvements for user equipment connected to the relays, even with simple scheduling techniques.
机译:新兴的高级长期演进(LTE-A)标准通过使用中继和协作多点(CoMP)传输和接收等技术,有望提高吞吐量并降低单位成本。中继节点固有的自回程特性使它们成为无法使用回程或成本高昂的地区的有吸引力的解决方案。但是,回程中继链路的性能限制了中继系统的整体性能,尤其是对于部署在小区边缘的中继而言。在本文中,我们提出了CoMP增强功能,以缓解中继链路瓶颈。我们通过对选定的实际部署方案进行系统仿真来研究此提议的方法。结果表明,使用量化共相位(QCP)CoMP技术可为连接到继电器的用户设备提供显着的信噪比与噪声比(SINR)增益,并提高端到端吞吐量。使用简单的调度技术。

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