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首页> 外文期刊>IEEE systems journal >Generalized Code Index Modulation and Spatial Modulation for High Rate and Energy-Efficient MIMO Systems on Rayleigh Block-Fading Channel
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Generalized Code Index Modulation and Spatial Modulation for High Rate and Energy-Efficient MIMO Systems on Rayleigh Block-Fading Channel

机译:瑞利砌块衰落通道高速率和节能MIMO系统的广义码指标调制与空间调制

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摘要

In this article, a high data rate and energy-efficient multiple-input multiple-output transmission scheme is considered by combining two popular and rational modulation techniques: spatial modulation (SM) and code index modulation-spread spectrum (CIM-SS). Since in the considered system, called generalized CIM-SM (GCIM-SM), incoming information bits determine modulated symbols, activated transmit antenna indices as well as their corresponding spreading code indices, data bits are conveyed not only by modulated symbols but also by the indices of the active antenna and spreading codes. Hence, a GCIM-SM scheme accommodates faster data rates while spending less transmission power and possessing better error performance compared to the conventional direct sequence spread spectrum (DS-SS), SM, quadrature SM (QSM), and CIM-SS systems. The mathematical expressions of the GCIM-SM system for bit error rate, throughput, energy efficiency, and the system complexity are derived to analyze the overall system performance. Besides, it has been shown via computer simulations that the GCIM-SM system has lower transmission energy, faster data transmission rate, and better error performance than DS-SS, SM, QSM, and CIM-SS systems. Performance analysis of the considered system was performed on Rayleigh block-fading channels for quadrature amplitude modulation technique.
机译:在本文中,通过组合两个流行和合理的调制技术来考虑高数据速率和节能多输入多输出传输方案:空间调制(SM)和代码索引调制 - 扩频频谱(CIM-SS)。由于在所考虑的系统中,称为广义CIM-SM(GCIM-SM),输入信息位确定调制符号,激活的发射天线指数以及它们的相应扩展码指标,不仅通过调制符号而传送数据比特,而且还通过主动天线和扩频码的指标。因此,与传统的直接序列扩频(DS-SS),SM,正交SM(QSM)和CIM-SS系统相比,GCIM-SM方案在花费更少的数据速率,同时花费更快的数据速率并具有更好的误差性能。导出GCIM-SM系统的数学表达式,用于误差率,吞吐量,能效和系统复杂性,以分析整体系统性能。此外,它已经通过计算机模拟显示了GCIM-SM系统的传输能量较低,数据传输速率更快,更好的错误性能,而不是DS-SS,SM,QSM和CIM-SS系统。考虑系统的性能分析是对正交幅度调制技术的瑞利块衰落通道进行的。

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