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首页> 外文期刊>Communications, IEEE Transactions on >Space Shift Keying (SSK) Modulation with Partial Channel State Information: Optimal Detector and Performance Analysis over Fading Channels
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Space Shift Keying (SSK) Modulation with Partial Channel State Information: Optimal Detector and Performance Analysis over Fading Channels

机译:具有部分信道状态信息的空移键控(SSK)调制:衰落信道上的最佳检测器和性能分析

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摘要

Space Shift Keying (SSK) modulation is a new and recently proposed transmission technology for Multiple—Input—Multiple—Output (MIMO) wireless systems, which has been shown to be a promising low—complexity alternative to several state—of—the—art MIMO schemes. So far, only optimal or heuristic transceivers with Full Channel State Information (F—CSI) at the receiver have been investigated, and their performance analyzed over fading channels. In this paper, we develop and study the performance of the optimal Maximum—Likelihood (ML) detector with unknown phase reference at the receiver (i.e., Partial—CSI, P—CSI, knowledge). A very accurate analytical framework for the analysis and optimization of this novel detector over generically correlated and non—identically distributed Nakagami—{m} fading channels is proposed, and its performance compared to the optimal receiver design with F—CSI. Numerical results will point out that: i) the performance of SSK modulation is significantly affected by the characteristics of fading channels, e.g., channel correlation, fading severity, and, particularly, power imbalance among the transmit—receive wireless links, and ii) unlike ordinary modulation schemes, there is a substantial performance loss when the receiver cannot exploit the phase information for optimal receiver design. This latter result highlights the importance of accurate and reliable channel estimation mechanisms for the efficient operation of SSK modulation over fading channels. Analytical frameworks and theoretical findings will also be substantiated via Monte Carlo simulations.
机译:空间移位键控(SSK)调制是一种针对多输入多输出(MIMO)无线系统的新近提出的传输技术,该技术已被证明是替代多种先进技术的有前途的低复杂度替代方案MIMO方案。到目前为止,仅研究了在接收器处具有全信道状态信息(F-CSI)的最佳或启发式收发器,并分析了其在衰落信道上的性能。在本文中,我们开发并研究了在接收机处具有未知相位参考的最佳最大似然(ML)检测器的性能(即,Partial-CSI,P-CSI,知识)。提出了一个非常精确的分析框架,用于在通用相关且非相同分布的Nakagami- {m}衰落信道上对这种新型检测器进行分析和优化,并将其性能与采用F-CSI的最佳接收器设计相比。数值结果将指出:i)SSK调制的性能受到衰落信道特性的显着影响,例如,信道相关性,衰落严重性,尤其是收发无线链路之间的功率不平衡,以及在常规调制方案中,当接收器无法利用相位信息进行最佳接收器设计时,将会有很大的性能损失。后一个结果突出了准确可靠的信道估计机制对于衰落信道上SSK调制的有效操作的重要性。分析框架和理论发现也将通过蒙特卡洛模拟得到证实。

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