Design of H-inf channel estimation in multi-cell MU-MIMO OFDM systems

P. Xu, Jiangzhou Wang, Jinkuan Wang
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Abstract

This paper investigates the uplink transmission in multi-cell multi-user multiple input multiple output (MIMO) orthogonal frequency division multiplexing (OFDM) systems. The system model considers imperfect channel estimation, pilot contamination (PC), multiple sub-carriers and multi-path channels. We propose a simple H-inf channel estimation that achieves good suppression to PC. The approach exploits the space-alternating generalized EM (SAGE) iterative process to decompose multi-cell multi-user MIMO problem into a series of single-cell single-user SISO problems, which reduces the complexity drastically. Analysis on mean square error (MSE) of H-inf in the presence of PC is also presented. The numerical results show that increasing the number of pilot subcarriers cannot mitigate PC, and a clue for relieving PC can be obtained. The H-inf realizes better suppression to PC than the LS and ML algorithms. Its performance is close to the optimal MMSE algorithm and can be improved as the increase in the length of channel impulse response (CIR). By using the SAGE process, the performance of the H-inf does not degrade in case of a large number of antennas at base station (BS).
多小区MU-MIMO OFDM系统中H-inf信道估计设计
研究了多小区多用户多输入多输出(MIMO)正交频分复用(OFDM)系统中的上行传输问题。该系统模型考虑了不完全信道估计、导频污染、多子载波和多径信道等问题。我们提出了一种简单的H-inf信道估计方法,可以很好地抑制PC。该方法利用空间交替广义EM (SAGE)迭代过程,将多单元多用户MIMO问题分解为一系列单单元单用户MIMO问题,大大降低了MIMO问题的复杂度。本文还分析了PC存在时H-inf的均方误差(MSE)。数值计算结果表明,增加导频子载波的数量并不能有效地缓解导频子载波的干扰,为缓解导频子载波的干扰提供了线索。H-inf算法对PC的抑制效果优于LS和ML算法。该算法的性能接近最优MMSE算法,并能随着信道脉冲响应(CIR)长度的增加而得到改善。采用SAGE工艺,在基站天线数量较多的情况下,H-inf的性能不会下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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