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Two compressive sensing-based estimation schemes designed for rapidly time-varying channels in orthogonal frequency division multiplexing systems

机译:为正交频分复用系统中的快速时变信道设计的两种基于压缩感测的估计方案

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摘要

The problem of estimating rapidly time-varying channels is considered to be one of the key challenges in high mobility orthogonal frequency division multiplexing (OFDM) systems. In such scenarios, fast time variation within OFDM symbol duration requires overloaded measurements for estimation. By exploiting the inherent sparsity of wireless channels, the authors cast the channel estimation as a compressive sensing (CS) problem to reduce the required pilot symbols. Different from the existing CS-based estimators which mainly focus on the diagonal matrix model and treat the inter-carrier interference as additive noise, the proposed methods are designed for the non-diagonal matrix, a more precise representation of fast fading channels. To handle this more complex channel model, an iterative estimation scheme is presented, which adopts the recently introduced modified-CS algorithm. In addition, a more simplified scheme is also designed by utilising a reasonable approximation of the system model. Compared to the former method, it has a reduced computational complexity with limited performance degradation. The simulation results demonstrate that the two proposed CS-based methods are robust to large Doppler spreading and have better performance than conventional CS-based estimators for fast time-varying channels in OFDM systems.
机译:估计快速时变信道的问题被认为是高迁移率正交频分复用(OFDM)系统中的关键挑战之一。在这种情况下,OFDM符号持续时间之内的快速时间变化需要过载的测量结果以进行估计。通过利用无线信道的固有稀疏性,作者将信道估计转换为压缩感测(CS)问题,以减少所需的导频符号。与现有的基于CS的估计器(主要关注对角矩阵模型并将载波间干扰视为加性噪声)不同,所提出的方法是针对非对角矩阵设计的,它是快速衰落信道的更精确表示。为了处理这个更复杂的信道模型,提出了一种迭代估计方案,该方案采用了最近引入的改进的CS算法。另外,还通过利用系统模型的合理近似来设计更简化的方案。与前一种方法相比,它具有降低的计算复杂度和有限的性能下降。仿真结果表明,两种建议的基于CS的方法对于大的多普勒扩展具有鲁棒性,并且比OFDM系统中快速时变信道的传统基于CS的估计器具有更好的性能。

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  • 来源
    《Signal Processing, IET》 |2014年第3期|291-299|共9页
  • 作者

    Yi Liu; Wenbo Mei; Huiqian Du;

  • 作者单位

    Sch. of Inf. & Electron., Beijing Inst. of Technol., Beijing, China|c|;

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  • 正文语种 eng
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