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Space-Time Media-Based Modulation

机译:基于时空媒体的调制

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摘要

Media-based modulation (MBM), which utilizes radiation patterns of a reconfigurable antenna to convey information, appears as a promising index modulation (IM) scheme for beyond SG networking. In this paper, we present a general framework for MBM from the perspective of space-time coding, and introduce a novel space-time coded IM concept, which is called space-time media-based modulation (ST-MBM). The proposed scheme is based on one of the prominent IM solutions, space shift keying, along with Hurwitz-Radon family of matrices in order to achieve transmit diversity gain with a single radio frequency (RF) chain by utilizing the unique RF mirror activation principle of MBM. We derive the theoretical pairwise error probability of the ST-MBM scheme for correlated and uncorrelated channel states and obtain the average bit error probability. Additionally, a lower bound is derived for the mutual information of the ST-MBM scheme to gain insights into the information theoretical bounds of the proposed scheme. Furthermore, extensive computer simulations are provided to show the superior error performance of the ST-MBM scheme over the state-of-the-art multiple-input multiple-output-based transmission systems.
机译:利用可重新配置天线的辐射图案来传达信息的媒体的调制(MBM)看起来作为超出SG网络的有希望的指标调制(IM)方案。在本文中,我们从时空编码的角度介绍了MBM的一般框架,并引入了一种新的空间时间编码IM概念,称为基于时空媒体的调制(ST-MBM)。所提出的方案基于突出的IM解决方案之一,空间移位键控,以及Hurwitz-Radon系列矩阵,以便通过利用独特的RF镜像激活原理来实现单个射频(RF)链的传输分集增益MBM。我们推导出ST-MBM方案的理论成对误差概率,用于相关和不相关的信道状态,并获得平均误码概率。另外,导出下限,用于ST-MBM方案的相互信息,以获得所提出的方案的信息理论界限的洞察。此外,提供了广泛的计算机模拟,以显示ST-MBM方案在最先进的基于多输出的传输系统上的ST-MBM方案的卓越误差性能。

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