Dual Polarized Spatial Modulation for Land Mobile Satellite Communications

Jing Zhu, Ping Yang, Yue Xiao, M. Renzo, Shaoqian Li
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引用次数: 4

Abstract

In this paper, two novel high-rate multiple-input multiple-out (MIMO) transmission schemes are proposed for dual polarized land mobile satellite (LMS) communications, where the polarization dimension and spatial dimension are jointly exploited to convey information. To be specific, we first extend the concept of polarized modulation (PMod) from single antenna LMS systems to multi-antennas LMS systems, which utilizes the parallel polarization states for bit mapping. This new scheme, namely generalized PMod (GPMod), is capable of improving the transmission rate linearly with the number of transmit antennas. For high-rate scenarios, the proposed GPMod needs to deal with the interference introduced by cross polarization, which may degrade the system performance. In order to circumvent the cross-polarization interference, we employ the concept of index modulation to both polarization dimension and spatial dimension and proposed a novel interference-free scheme, namely polarized spatial modulation (PMod-SM). Finally, an upper bound for the average bit error probability (ABEP) of the proposed scheme is derived for the generalized spatially correlated Rician channel model. Both analytical and simulation results are presented to demonstrate that the proposed PMod-SM scheme is capable of achieving considerable performance gains compared to the conventional PMod and the GPMod schemes.
用于陆地移动卫星通信的双极化空间调制
针对双极化陆地移动卫星(LMS)通信,提出了两种新的高速率多输入多输出(MIMO)传输方案,将极化维数和空间维数结合起来进行信息传输。具体而言,我们首先将极化调制(PMod)的概念从单天线LMS系统扩展到多天线LMS系统,该系统利用并行极化状态进行位映射。这种新方案,即广义PMod (GPMod),能够随着发射天线数的增加而线性提高传输速率。在高速率场景下,所提出的GPMod需要处理交叉极化带来的干扰,这可能会降低系统的性能。为了避免交叉极化干扰,我们将折射率调制的概念引入到偏振维度和空间维度,提出了一种新的无干扰方案,即偏振空间调制(PMod-SM)。最后,推导了广义空间相关信道模型的平均误码率(ABEP)上界。分析和仿真结果表明,与传统的PMod和GPMod方案相比,所提出的PMod- sm方案能够获得相当大的性能提升。
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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