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Adaptive/Iterative Frequency-Domain Channel Estimation for Space-Time Block-Coded Single-Carrier Systems with Cyclic-Prefix

机译:具有循环前缀的时空块编码单载波系统的自适应/迭代频域信道估计

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摘要

In the space-time block-coded (STBC) single-carrier systems with a cyclic-prefix, decoupling and equalization procedures at the receiver require an exact channel impulse response (CIR). In this paper, we propose a weighted STBC-like matrix-wise block adaptive/iterative frequency-domain channel estimation (WSB-CE) that is operated iteratively by using soft information obtained from the SISO decoder. In the WSB-CE, the correction terms of the channel estimator coefficients in each block are calculated so as to minimize a weighted conditional squared norm of the a posteriori error vector in a weighted least-square (LS) sense. Our simulation results verify the superiority of the WSB-CE by comparing with an approximated modified recursive-least-square (RLS)-CE in the time-varying typical urban (TU) channel.
机译:在具有循环前缀的时空块编码(STBC)单载波系统中,接收器处的去耦和均衡过程需要精确的信道脉冲响应(CIR)。在本文中,我们提出了一种加权的STBC样矩阵 - 方向块自适应/迭代频域信道估计(WSB-CE),其通过使用从SISO解码器获得的软信息来迭代地操作。在WSB-CE中,计算每个块中的信道估计器系数的校正项,以便最小化加权最小二乘(LS)感测的后验误差矢量的加权条件平方标准。我们的仿真结果通过与时变典型的城市(TU)通道中的近似修正的递归 - 最小二乘(RLS)进行比较,验证WSB-CE的优越性。

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