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Combining space-time block modulation with integer forcing receivers

机译:用整数强制接收器组合空间时间块调制

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In a recent work by Zhan et al., a new equalization technique for multiple-input multiple-output channels, applicable when linear codes are used for transmission, was proposed. In this technique, coined integer-forcing equalization, the channel matrix is equalized at the receiver to one consisting of only integer entries. It was demonstrated that for quasi-static independent flat Rayleigh fading, and when independent streams are sent over each transmit antenna, this equalization technique allows to approach quite closely maximum-likelihood performance, using standard coding and decoding of off-the-shelf linear codes designed for transmission over a scalar white Gaussian channel. In particular, the technique is optimal in the diversity-multiplexing tradeoff sense. In the present work, we describe how this receiver structure may be seamlessly combined with linear transmit diversity methods. We show that for quasi-static independent flat Rayleigh fading, this combination allows to approach closely the outage capacity of the channel using linear pre- and post-processing and standard scalar coding and decoding.
机译:在Zhan等人的最近工作中,提出了一种用于多输入多输出通道的新均衡技术,适用于线性码用于传输时。在该技术中,在整数强制均衡中,信道矩阵在接收器处均衡到仅由整数条目组成的一个。据证明,对于准静电独立的扁平瑞利衰落,并且当在每个发射天线上发送独立流时,这种均衡技术允许使用标准编码和解码的离上线性码来接近最大似然性能。专为在标量白高斯通道上传输而设计。特别是,该技术在分集多路复用权衡意义上是最佳的。在本作工作中,我们描述了该接收器结构如何与线性发射分集方法无缝地结合。我们表明,对于准静态独立的德莱利衰落,这种组合允许使用线性预处理和后处理和标准标量编码和解码来仔细接近信道的停电能力。

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