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A Low Complexity ICI Cancellation Scheme with Multi-Step Windowing and Modified SIC for High-Mobility OFDM Systems

机译:具有多步窗口和修改SiC的低复杂性ICI取消方案,用于高流动性OFDM系统

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A novel low complexity scheme consists of multi-step windowing and modified SIC, is proposed for OFDM systems to reduce ICI caused by time-varying channel. Assuming that the maximum channel delay is smaller than the guard interval, a multi-step windowing module implemented by suitably shifting and summing the multiple weighted ISI-free received signal segments, is adopted to automatically alleviate ICI effect. Afterwards, a modified SIC equalizer with overlapped multi-block and parallel processing is adopted to further improve the BER performance and simultaneously reduce the iteration number for the SIC sub-blocks. Moreover, this work shows that the proposed windowing concentrates the ICI effect and determines the number of dominant ICI terms, and hence it helps to reduce the computation complexity in ICI reconstruction & cancellation. Computer simulation results verify that the proposed low complexity method achieves good performance with moderate iteration number for high mobility OFDM systems in the ITU Vehicular A channel.
机译:一种新的低复杂性方案由多步窗口和修改SiC组成,为OFDM系统提出了减少由时变信道引起的ICI。假设最大信道延迟小于保护间隔,所采用通过适当地移动和求和多加权的无ISI接收信号段实现的多步窗口模块来自动缓解ICI效果。之后,采用具有重叠的多块和并行处理的修改的SiC均衡器来进一步改善BER性能,并同时减少SIC子块的迭代号。此外,这项工作表明,建议的窗口集中了ICI效应并确定了显性ICI术语的数量,因此有助于降低ICI重建和取消的计算复杂性。计算机仿真结果验证所提出的低复杂性方法在国际电联车辆中,在ITU车辆中的高移动性OFDM系统的温和迭代号达到了良好的性能。

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