Beamforming Based MIMO-OFDMA System for Performance Improvement in Harsh Downlink Channels

Daejin Park, Suckchel Yang, Y. Shin
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引用次数: 1

Abstract

We propose a MIMO-OFDMA (multi input multi output-orthogonal frequency division multiple access) system based on beamforming for harsh downlink channels with low CIR (carrier-to-interference ratio). In the proposed system, we consider an effective CSI (channel state information) calculation based on spatial resource grouping, which is adequate for a combination of MRT (maximum ratio transmission) beamforming in the BS (base station) and MRC (maximum ratio combining) in the MS (mobile station). In addition, to reduce feedback information for the beamforming, we apply the Grassmannian beamforming scheme. Furthermore, for fair and efficient resource allocation in multi-user environment, we propose a simple resource allocation algorithm composed of three steps. Simulation results reveal that the proposed MIMO-OFDMA system achieves significant improvement of spectral efficiency in low CIR region as compared to a typical open-loop MIMO-OFDMA system using pseudo-orthogonal space time block code
基于波束形成的MIMO-OFDMA系统在恶劣下行信道中的性能改进
我们提出了一种基于波束形成的MIMO-OFDMA(多输入多输出正交频分多址)系统,用于低载波干扰比(CIR)的恶劣下行信道。在该系统中,我们考虑了一种有效的基于空间资源分组的信道状态信息CSI(信道状态信息)计算方法,该方法适合于BS(基站)中的MRT(最大比传输)波束形成和MS(移动站)中的MRC(最大比组合)波束形成的组合。此外,为了减少波束形成的反馈信息,我们采用了格拉斯曼波束形成方案。此外,为了在多用户环境下公平高效地分配资源,我们提出了一种由三步组成的简单资源分配算法。仿真结果表明,与采用伪正交空时分组码的典型开环MIMO-OFDMA系统相比,所提出的MIMO-OFDMA系统在低CIR区域的频谱效率有显著提高
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