Layered Steered Space-Time Codes Using Iterative Detection

M. El-Hajjar, O. Alamri, L. Hanzo
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引用次数: 3

Abstract

This paper presents a novel multifunctional multiple-input multiple-output (MIMO) scheme that combines the benefits of the Vertical Bell Labs Layered Space-Time (V-BLAST) scheme, of Space-Time Codes (STC) as well as of beam-forming. Further system performance improvements can be attained by serially concatenated convolutional encoding combined with a unity-rate code (URC) referred to as a precoder. Then, at the receiver side, iterative decoding is invoked by exchanging extrinsic information between the precoder's decoder as well as the outer Recursive Systematic Convolutional (RSC) code's decoder. Moreover, the convergence behaviour of the proposed system is evaluated with the aid of Extrinsic Information Transfer (EXIT) charts. Finally, we quantify the maximum achievable rate of the system based on EXIT charts and demonstrate that the iterative-detection-aided system is capable of operating within 1 dB from the maximum achievable rate.
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基于迭代检测的分层操纵空时码
本文提出了一种新的多功能多输入多输出(MIMO)方案,它结合了垂直贝尔实验室分层空时(V-BLAST)方案、空时码(STC)和波束形成的优点。进一步的系统性能改进可以通过串联卷积编码和称为预编码器的单位率编码(URC)相结合来实现。然后,在接收端,通过在预编码器的解码器和外部递归系统卷积(RSC)码的解码器之间交换外部信息来调用迭代解码。此外,利用外部信息传递(EXIT)图对系统的收敛性进行了评价。最后,我们根据EXIT图量化了系统的最大可实现速率,并证明了迭代检测辅助系统能够在距离最大可实现速率1 dB的范围内工作。
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