Enhancing Spectral Efficiency and BER Performance of Spatial Modulation using Layered Architecture

Saad Chaudhry, Xiaoya Zuo, Rugui Yao, Hailong Liu, T. Mekkawy
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Abstract

The recent emergence of spatial modulation (SM) as a new modulation concept maneuvers the random and unique properties of the multiple-input multiple-output (MIMO) wireless channels. In this paper, an enhancement in SM scheme is proposed by innovative usage of quadrature amplitude modulation (QAM) to add layers which fully exploit both the signal and spatial domains. Layered spatial modulation (LSM) controls the preset rotated signals with normalized amplitudes to classify the layers and to identify the transmitted symbols at the transceiver by completely avoiding inter-channel interference (ICI). High spectral efficiency can be achieved with the addition of only one transmit antenna for each layer by the LSM scheme. Simulation results show that the proposed method has significant improvement in spectral efficiency and bit-error-rate (BER) performance as compared to other MIMO schemes.
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利用分层结构提高空间调制的频谱效率和误码率
空间调制(SM)作为一种新的调制概念,利用了多输入多输出(MIMO)无线信道的随机性和独特性。本文提出了一种改进的SM方案,创新地使用正交调幅(QAM)来增加充分利用信号域和空间域的层。分层空间调制(LSM)通过控制预设的旋转信号以归一化幅度进行分层分类,并通过完全避免信道间干扰(ICI)来识别收发器发送的信号。通过LSM方案,每层只增加一个发射天线就可以获得较高的频谱效率。仿真结果表明,与其他MIMO方案相比,该方法在频谱效率和误码率性能方面有显著提高。
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