TD-LTE系统物理下行和上行信道性能分析

Muzi Wu, Yuexing Peng, X. Yang, Xiaofeng Zhang, Wenbo Wang
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引用次数: 7

摘要

TD-LTE作为TD-SCDMA的演进,旨在支持高数据速率和减少无线电链路延迟。为了实现这些目标,为TD-LTE指定了新的空中接口。本文采用数值模拟的方法对物理上行和下行信道的性能进行了评价。由于智能天线的部署是TD-SCDMA的独特之处,因此本文特别关注了TD-LTE双极化智能天线方案,该方案相对于传统的单极化智能天线而言,具有更小的天线阵列尺寸和更好的稳定性,极大地促进了实际应用。采用单极化和双极化智能天线对多物理信道的误差性能进行了仿真,链路级仿真结果表明,双极化方案的信噪比损失较小,但在实际应用中具有显著的优势。强烈建议在TD-LTE中部署双极化智能天线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance analysis of physical downlink and uplink channels in TD-LTE system
TD-LTE as the evolution of TD-SCDMA is designed to support high data rates and reduced radio link delays. To reach these goals, new air interface is specified for TD-LTE. In this paper, the performance of physical uplink and downlink channels are evaluated by means of numerical simulations. Since the deployment of smart antennas is the unique feature of TD-SCDMA, special attentions are paid to the case of TD-LTE with dual-polarized smart antennas scheme, which can greatly facilitate practical application by smaller antenna array size and better stability relative to traditional mono-polarized smart antennas. The error performance is simulated for multiple physical channels with both mono- and dual-polarized smart antennas, and the simulation results on link level show that the dual-polarization scheme pays slight penalty of signal-to-noise ratio (SNR) loss, but brings significant benefits to practical application. It is intensively recommended to deploy the dual-polarized smart antennas in TD-LTE.
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