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Highly Efficient Sparse Multipath Channel Estimator With Chu-sequence Preamble For Frequency-domain Mimo Dfe Receiver

机译:频域Mimo Dfe接收器的Chu序列前同步码的高效稀疏多径信道估计器

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摘要

In this paper, a sparse multipath channel estimation algorithm is proposed for multiple-input multiple-output (MIMO) single-carrier systems with frequency-domain decision feedback equalizer (FD-DFE). This algorithm exploits the orthogonality of an optimal MIMO preamble based on repeated, phase-rotated, Chu (RPC) sequences, leading to a dramatic reduction in computation. Furthermore, the proposed algorithm employs an improved non-iterative procedure utilizing the Generalized AIC criterion (GAIC), resulting in further computational saving and performance improvement. The proposed scheme is simulated for 802.16d SCa-PHY and SUI-5 sparse channel model under a 2 × 2 spatial multiplexing scenario, with the MIMO FD-DFE as the receiver. The result shows that the channel estimation accuracy is significantly improved, and the performance loss compared to the known channel case is only 0.7 dB at the BER of 10~(-3).
机译:本文针对具有频域判决反馈均衡器(FD-DFE)的多输入多输出(MIMO)单载波系统,提出了一种稀疏的多径信道估计算法。该算法基于重复的,相位旋转的Chu(RPC)序列,利用了最佳MIMO前导的正交性,从而大大减少了计算量。此外,该算法采用了一种改进的非迭代过程,该过程利用了通用AIC准则(GAIC),从而进一步节省了计算量并提高了性能。在2×2空间复用的情况下,以MIMO FD-DFE作为接收器,对802.16d SCa-PHY和SUI-5稀疏信道模型进行了仿真。结果表明,信道估计精度得到了显着提高,在10〜(-3)的BER下,与已知信道相比,性能损失仅为0.7 dB。

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