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Low-complexity equalisation of doubly selective channels for multiple-input-multiple-output transmission systems

机译:用于多输入多输出传输系统的双选通道的低复杂度均衡

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Equalisation of multiple-input-multiple-output doubly selective channels is studied and a technique for low-complexity equalisation of doubly selective channels is proposed. This paper studies low-complexity techniques for linear equalisation as well as two different architectures for non-linear equalisation. The first non-linear architecture only involves feedback of decisions on previously detected symbols to cancel intersymbol interference. The second non-linear architecture separates the interference into intersymbol interference between successive transmissions and co-channel interference (CCI) between the multiple transmit streams. The ISI is then handled with a combination of both interference suppression via filtering and interference cancellation via decision feedback. However, the CCI is handled by an ordered successive interference cancellation mechanism. Both receiver structures involve significant design complexity because of the channel time variations. Therefore low-complexity implementations are proposed. The time-varying nature of the channel requires time-varying equalisers. The proposed low-complexity scheme thus involves designing equalisers at uniformly spaced intervals within the transmit block and then interpolating to obtain the time-varying equalisers over the remainder of the block. The proposed low-complexity approaches to equalisation are analysed in terms of both performance and complexity.
机译:研究了多输入多输出双选通道的均衡,提出了一种低复杂度的双选通道均衡技术。本文研究了用于线性均衡的低复杂度技术以及用于非线性均衡的两种不同架构。第一非线性架构仅涉及对先前检测到的符号的决策的反馈,以消除符号间干扰。第二种非线性架构将干扰分为连续传输之间的符号间干扰和多个传输流之间的同信道干扰(CCI)。然后将ISI通过过滤的干扰抑制和通过决策反馈的干扰消除结合起来处理。但是,CCI由有序的连续干扰消除机制处理。由于信道时间的变化,两种接收机结构都涉及显着的设计复杂性。因此,提出了低复杂度的实现。信道的时变性质要求时变均衡器。因此,所提出的低复杂度方案涉及在发射块内以均匀间隔的间隔设计均衡器,然后进行内插以获得在块的其余部分上随时间变化的均衡器。从性能和复杂度两方面分析了所提出的低复杂度均衡方法。

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  • 来源
    《Signal Processing, IET》 |2013年第2期|101-111|共11页
  • 作者单位

    College of Engineering, UAE University, Al Ain, UAE, NUML, Islamabad;

    College of Engineering, UAE University, Al Ain, UAE, NUML, Islamabad;

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  • 正文语种 eng
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