具有全局预编码矩阵和IRC接收机的LTE-A联合传输CoMP的性能

H. R. Ahmed, E. Sourour, H. Elkamchouchi
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引用次数: 4

摘要

多点协调发射与接收(CoMP)是LTE-A系统中缓解蜂窝边缘用户干扰和提高频谱效率的重要途径之一。本文提出了一种LTE-CoMP的联合传输方案,该方案在传输点上联合(全局)选择MIMO预编码矩阵以获得更高的容量。预编码矩阵由用户设备(UE)共同选择,以适应来自两个基站(enb)的独立MIMO信道。此外,边缘用户可能会受到来自联合传输集之外的enb的严重同信道干扰。为了解决这一问题,引入干扰抑制组合(IRC)接收机来提高蜂窝边缘用户的性能。本文研究了采用局部预编码矩阵和全局预编码矩阵的线性IRC接收机结构在闭环空间复用MIMO中抑制CoMP-JT干扰的性能。仿真结果表明,采用全局预编码矩阵方案的CoMP-JT比采用局部预编码矩阵方案的性能要好1 dB以上。此外,在存在同信道干扰的情况下,使用MMSE- irc比传统的最小均方误差(MMSE)具有更好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance of joint transmission CoMP with global precoding matrix and IRC receiver for LTE-A
Coordinated multi-point transmission and reception (CoMP) is one of the most important ways of mitigating interference and improving spectral efficiency for cell edge users in Long Term Evolution-Advanced (LTE-A) system. In this paper we propose a joint transmission scheme for LTE-CoMP where MIMO precoding matrices at the transmission points are jointly (globally) selected to achieve higher capacity. The precoding matrices are jointly chosen by the User Equipment (UE) to fit the independent MIMO channels from two base stations (eNBs). In addition, edge users are likely to be subject to severe Co-channel interference from eNBs outside the joint transmission set. In order to address this issue, interference rejection combining (IRC) receiver is introduced to improve the cell-edge user performance. In this paper the performance of linear IRC receiver structures is investigated for interference suppression for CoMP-JT with local and global precoding matrix for closed loop spatial multiplexing MIMO. Simulation results show that the CoMP-JT with global precoding matrix scheme outperforms local precoding matrix with more than 1 dB. In addition, using MMSE-IRC gives much better performance than the conventional minimum mean square error (MMSE) in the presence of co-channel interference.
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