On-the-fly Uplink Training and Pilot Code Design for Massive MIMO Cellular Networks

Chenwei Wang, Zekun Zhang, H. Papadopoulos
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引用次数: 1

Abstract

We investigate non-orthogonal uplink pilot designs for improving the area spectral efficiency in the downlink of TDD reciprocity-based massive MIMO cellular networks. In particular, we develop a class of pilot designs that are locally orthogonal within each cell, while maintaining low inner-product properties between codes in different cells. Using channel estimations provided by observations on these codes, each cell independently serves its locally active users with MU-MIMO transmission that is also designed to mitigate interference to a subset of "strongly interfered" out-of-cell users. As our analysis shows, such cellular operation based on the proposed codes yields improvements (with respect to conventional operation) in user-rate CDFs, cell-throughput and cell-edge throughput performance.
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大规模MIMO蜂窝网络的动态上行训练与导频码设计
为了提高基于TDD互向的大规模MIMO蜂窝网络下行链路的区域频谱效率,我们研究了非正交上行导频设计。特别是,我们开发了一类在每个单元内局部正交的试验设计,同时在不同单元中的代码之间保持低内积性质。利用对这些代码的观察提供的信道估计,每个小区独立地为其本地活跃用户提供MU-MIMO传输,该传输也旨在减轻对“强干扰”小区外用户子集的干扰。正如我们的分析所显示的那样,基于所提议的代码的这种蜂窝操作(相对于传统操作)在用户速率CDFs、蜂窝吞吐量和蜂窝边缘吞吐量性能方面产生了改进。
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