Capacity Analysis of Time-Indexed Media-based Modulation

Bharath Shamasundar, L. N. Theagarajan, A. Chockalingam
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引用次数: 2

Abstract

Time-indexed media-based modulation (TI-MBM) is an index modulation scheme where time slots in a transmission frame are indexed to convey additional information bits in media-based modulation (MBM). It was shown in the literature that, in frequency selective fading channels with inter-symbol interference, TI-MBM with cyclic-prefixed single-carrier (CPSC) scheme can achieve better transmission rates, bit error performance, and multipath diversity gain compared to conventional MBM. In this paper, we analyze the capacity of TI-MBM with CPSC, which has not been reported before. We show that, for a given channel matrix, selecting the index of the activated time slots and RF mirrors according to uniform distribution is suboptimal. We derive the probabilities with which time slots and RF mirrors in TI-MBM can be activated such that the achievable transmission rate is maximized. Further, we prove that the transmit symbols from a Gaussian mixture distribution, whose mixture weights are chosen to be the product of these probabilities, can achieve capacity.
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基于时间索引的媒体调制的容量分析
基于时间索引的媒体调制(TI-MBM)是一种索引调制方案,在基于媒体的调制(MBM)中,传输帧中的时隙被索引以传递额外的信息位。文献表明,在具有码间干扰的频率选择性衰落信道中,采用循环前缀单载波(CPSC)方案的TI-MBM比传统MBM具有更好的传输速率、误码性能和多径分集增益。在本文中,我们分析了TI-MBM与CPSC的容量,这是以前没有报道过的。研究表明,对于给定的信道矩阵,根据均匀分布选择激活时隙和射频镜像的索引是次优的。我们推导了在TI-MBM中激活时隙和射频镜像以使可实现的传输速率最大化的概率。进一步,我们证明了高斯混合分布的传输符号,其混合权值选择为这些概率的乘积,可以达到容量。
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