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A Novel Subspace Channel Estimation with Fast Convergence for ZP-OFDM Systems

机译:ZP-OFDM系统中具有快速收敛性的新型子空间信道估计

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Novel subspace channel estimation with fast convergence is proposed for single-input multiple-output (SIMO) zero-padded orthogonal frequency-division multiplexing (ZP-OFDM) systems. Stacking all the received OFDM symbols turns the channel matrix to be block Toeplitz. The block matrix scheme is then presented so a group of sub-vectors is formed from the stacked OFDM signal and the number of samples is increased. With the sub-vector samples, the perturbations of the sample correlation matrix and the noise subspace are reduced considerably and therefore, the channel estimation error is lowered. Computer simulations demonstrate that the proposed channel estimation is effective and robust compared with existing methods.
机译:针对单输入多输出(SIMO)零填充正交频分复用(ZP-OFDM)系统,提出了一种具有快速收敛性的新型子空间信道估计。堆叠所有接收到的OFDM符号会使信道矩阵成为块Toeplitz。然后提出块矩阵方案,以便从堆叠的OFDM信号形成一组子矢量,并增加采样数。利用子矢量样本,样本相关矩阵和噪声子空间的扰动被大大减少,因此,信道估计误差被降低。计算机仿真表明,与现有方法相比,所提出的信道估计是有效且鲁棒的。

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