Adaptation of a wireless system to the polarization state of the propagation channel can improve reliability and throughput. This paper in particular considers polarization reconfigurable multiple input multiple output (PR-MIMO) systems, where both transmitter and receiver can change the (linear) polarization orientation at each element of their antenna arrays. We first introduce joint polarization pre-post coding to maximize bounds on the capacity and the maximum eigenvalue of the channel matrix. For this we first derive approximate closed form equations of optimal polarization vectors at one link end, and then use iterative joint polarization pre-post coding to pursue joint optimal polarization vectors at both link ends. Next we investigate the combination of PR-MIMO with hybrid antenna selection / maximum ratio transmission (PR-HS/MRT), which can achieve a remarkable improvement of channel capacity and symbol error rate (SER). Further, two novel schemes of element wise and global polarization reconfiguration are presented for PR-HS/MRT. Comprehensive simulation results indicate that the proposed schemes provide 3 to 5 dB SNR gain in PR-MIMO spatial multiplexing and approximately 3 dB SNR gain in PRHS/ MRT, with concomitant improvements of channel capacity and SER.
翻译:对于无线系统的适应传播频道的两极分化状态可提高可靠性和吞吐量。本文尤其考虑两极分化可重新校准的多输入多重输出(PR-MIMO)系统,使发射机和接收机能够改变天线阵列每个部分的(线性)两极分化方向。我们首先采用联合极化前编码,以最大限度地扩大对频道矩阵容量和最大电子值的界限。为此,我们首先从一个链接端得出最佳两极化矢量的近似封闭式方程式,然后利用迭代联合极化前置编码,在两个链接端寻求联合最佳两极化矢量。我们下一步调查PR-MIMO与混合天线选择/最大比率传输(PR-HS/MRT)相结合的情况,这可以显著提高频道能力和符号误差率(SER)。此外,为PR-HS/MRT提出了两个新颖的、明智和全球极化的元值重组方案。全面模拟结果表明,拟议的方案在PR-MIM空间多轴中提供了3至5 dB SNR收益,并在PRH/MRT中大约3 dB SN收益。