Dual Polarized Modulation and receivers for mobile communications in urban areas

P. Henarejos, A. Pérez-Neira
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引用次数: 7

Abstract

Achieving an increase in the spectral efficiency (SE) has always been a major driver in the design of communication systems. The use of MIMO techniques in mobile communications has achieved significant benefits in improving the system throughput. The basic underlying concept of MIMO is to exploit the signal and channel characteristics to eliminate interference between multiple transmissions. Departing from the work carried out under the industrial projects in the works of Henarejos et al. (2013), we extend the results provided in their respective reports. The goal is to increase the SE without an increment of radiated energy without any Channel State Information at Transmitter (CSIT) and feedback at the transmitter and maintaining a very low computational complexity at the receiver. Although a priori additional power is required to increase the SE, we demonstrate that the proposed Polarized Modulation (PMod) scheme exploits the polarization diversity reducing the required EbN0 and adding an extra bit. We also introduce two receivers to demodulate this scheme of different computational complexities. We describe a Near Optimal Detector (NOD) which achieves almost the same performance as the optimal detector based on the Maximum Likelihood Detection (MLD), but with lower computational complexity. Finally, the results demonstrate that the PMod requires less EbN0 compared with the single polarization case, guarantees the robustness in the presence of the cross-polarization and validates that PMod can multiplex two streams of different Quality of Service (QoS).
用于城市地区移动通信的双极化调制和接收器
提高频谱效率(SE)一直是通信系统设计的主要驱动因素。MIMO技术在移动通信中的应用在提高系统吞吐量方面取得了显著的效果。MIMO的基本概念是利用信号和信道的特性来消除多个传输之间的干扰。从Henarejos等人(2013)在工业项目下开展的工作出发,我们扩展了他们各自报告中提供的结果。目标是在不增加辐射能量的情况下增加SE,而不增加发射机的信道状态信息(CSIT)和发射机的反馈,并保持接收机的极低计算复杂度。虽然需要先验的额外功率来增加SE,但我们证明了所提出的极化调制(PMod)方案利用极化分集降低了所需的EbN0并增加了额外的位。我们还引入了两个接收器来解调这种不同计算复杂度的方案。我们描述了一种近似最优检测器(NOD),它的性能与基于最大似然检测(MLD)的最优检测器几乎相同,但计算复杂度较低。最后,研究结果表明,与单极化情况相比,PMod所需的EbN0更少,保证了交叉极化存在时的鲁棒性,并验证了PMod可以复用两个不同服务质量(QoS)的流。
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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