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Relay placement for inter-band carrier aggregation with asymmetrical coverage

机译:用于带不对称覆盖的带间载波聚合的中继放置

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Relaying and carrier aggregation are two main features of Long Term Evolution Advanced (LTE-A) that improve the transmission and increase the capacity of the network. Besides, enhance the overall capacity inside the coverage area of a relay. A relay can be used to solve the problem of capacity fairness for non-overlapped region produced by the lower frequency component carrier in inter-band carrier aggregation. This paper proposes a new approach of relay placement to enhance the capacity of cell edge user in inter-band carrier aggregation scenario with asymmetrical coverage. A simulation model for LTE-A in the downlink has been developed to investigate the impact of relay placement. The simulation result shows that a relay can be placed inside the overlapped coverage region to enhance the capacity of the cell edge user. The study suggests that for average cases a relay should be placed closer to the middle of the cell produced by lower frequency component carrier. For extreme cases with higher path-loss exponent and for larger interband gaps, the relay should be placed closer to the cell edge. Furthermore, the optimal position of the relay is closer to the cell edge when the link budget of relay is much smaller than the eNodeB (eNB).
机译:中继和载波聚合是长期演进的两个主要特征,高级(LTE-A),可提高传输并提高网络的容量。此外,提高继电器的覆盖区域内的整体容量。继电器可用于解决由频带间载波聚合中的下频分量载波产生的非重叠区域的容量公平的问题。本文提出了一种新的中继放置方法,以增强具有不对称覆盖的带间载波聚合方案中的细胞边缘用户的容量。开发了下行链路中LTE-A的模拟模型,以研究继电器放置的影响。仿真结果表明,继电器可以放置在重叠的覆盖区域内,以增强小区边缘用户的容量。该研究表明,对于平均案例,继电器应更接近由较低频率分量载体产生的细胞的中间。对于具有更高路径损耗指数的极端情况以及对于更大的间带间隙,继电器应更靠近小区边缘。此外,当继电器的链路预算远小于eNodeB(eNB)时,继电器的最佳位置更靠近小区边缘。

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