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Performance Evaluation of LTE−Advanced Downlink in Inter and Intra Band Carrier Aggregation Under Mobility and Interference

机译:移动和干扰下LTE-Advanced下行链路在带内和带内载波聚合中的性能评估

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摘要

LTE−Advanced is a promising technology for a higher spectral efficiency and reliable transmission. This paper compares the downlink throughput experienced by mobile users in a macro-cell in an interference limited scenario with a frequency reuse of one. Bit accurate link level simulations are performed for the downlink physical shared channel (PDSCH). The study is performed for a single antenna system in specific routes at two different carrier frequencies (800 MHz and 2.6 GHz), for two urban environments in the United Kingdom,and two cell sizes. The paper also considers the carrier aggregation technique which has been proposed since it is difficult to ensure a single wide frequency band for operators. A state-of-the-art 3D ray tracer tool is used to generate 3D channel models for accurate modelling of channel statistics. The study shows that the 800 MHz band has no greater effect on the downlink throughput as compared to 2.6 GHz band, which leads to no additional advantages of inter-band aggregation (considering 800 MHz) compared to intra-band aggregation. It is also observed that a range of speeds can be handled while maintaining good performance in LTE−Advanced. We have clearly shown that the choice of cell size by mobile operators for optimum coverage depends mainly on the propagation characteristic of the environment.
机译:LTE-Advanced是一种有前途的技术,可实现更高的频谱效率和可靠的传输。本文比较了在频率受限为1的干扰受限情况下,宏小区中移动用户所经历的下行链路吞吐量。对下行链路物理共享信道(PDSCH)执行位准确的链路级别仿真。该研究是针对特定路径下的两个不同载波频率(800 MHz和2.6 GHz)下的单个天线系统,英国的两个城市环境以及两个小区大小而进行的。本文还考虑了已经提出的载波聚合技术,因为难以为运营商确保单个宽频带。最新的3D射线追踪器工具可用于生成3D通道模型,以对通道统计信息进行精确建模。研究表明,与2.6 GHz频带相比,800 MHz频带对下行链路吞吐量没有更大的影响,与频带内聚合相比,频带间聚合(考虑800 MHz)没有其他优势。还观察到,可以在维持LTE-Advanced的良好性能的同时处理一系列速度。我们已经清楚地表明,移动运营商为最佳覆盖范围而选择的小区大小主要取决于环境的传播特性。

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