编码MIMO-OFDM的预编码与扩频

D. Yacoub, Benjamin Baumgartner, W. Teich, J. Lindner
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引用次数: 3

摘要

本文研究了MIMO-OFDM编码传输中预编码与扩频相结合的方法。尽管MIMO-OFDM系统提供了发射机可以利用的空间和频率分集,例如通过扩频,但它们经常受到天线相关性的影响,从而降低系统性能。通常假定接收机了解全部信道信息,而发射机一无所知。在本文中,假定部分信道知识(发射相关性)在发送端可用,并由预编码器利用。在发射机处也应用扩频来提取全部或部分MIMO-OFDM分集。此外,假设使用卷积码进行编码传输。在接收端,迭代均衡和译码是在完全信道知识的前提下进行的。采用软Cholesky均衡器(SCE)和递归神经网络均衡器(RNN)两种次优均衡器进行均衡化。利用出口图分析了MIMO-OFDM系统在预编码和扩频下的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Precoding and spreading for coded MIMO-OFDM
In this paper, precoding in combination with spreading for coded transmission using MIMO-OFDM is investigated. Although MIMO-OFDM systems provide both spatial and frequency diversities that can be exploited by the transmitter, e. g. through spreading, they often suffer from the presence of antenna correlations which can degrade the system performance. Full channel knowledge is usually assumed at the receiver and none at the transmitter. In this paper, partial channel knowledge (transmit correlations) is assumed to be available at the transmitter and is exploited by the precoder. Spreading is also applied at the transmitter to extract the MIMO-OFDM diversity either fully or partially. In addition, coded transmission using convolutional codes is assumed. At the receiver, iterative equalization and decoding is employed assuming full channel knowledge. Two sub-optimum equalizers, soft Cholesky equalizer (SCE) and recurrent neural network equalizer (RNN), are used for equalization. Through the used of EXIT-charts, the performance of the MIMO-OFDM system with both precoding and spreading is analyzed.
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