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Accurate and Efficient Path Delay Estimation in OMP Based Sparse Channel Estimation for OFDM With Equispaced Pilots

机译:等距先导OFDM的基于OMP的稀疏信道估计中的精确高效路径延迟估计

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摘要

The orthogonal matching pursuit (OMP) algorithm has been widely adopted in sparse channel estimation, both in radio and underwater acoustic communications. Traditionally, the accuracy of path delay estimation in an OMP based channel estimator depends on the adopted delay grid. The finer the delay grid, the higher the estimation accuracy, but meanwhile the higher the computational complexity. In this letter, we propose a modified OMP based channel estimation scheme for orthogonal frequency division multiplexing with equispaced pilots, which utilizes the characteristic of the Hermitian inner product between the pilot-compensated frequency observation vector and the columns of the dictionary matrix to provide a closed-form estimate for the path delays. In addition, a two-step scheme facilitated by Goertzel's algorithm is proposed to search the samples in the closed-form estimation to further reduce the computational complexity. Simulation results and complexity analysis demonstrate the advantages of the proposed scheme in both estimation accuracy and computational complexity.
机译:在无线电和水下声学通信中,稀疏信道估计中已广泛采用正交匹配追踪(OMP)算法。传统上,基于OMP的信道估计器中路径延迟估计的准确性取决于所采用的延迟网格。延迟网格越细,估计精度越高,但是计算复杂度越高。在这封信中,我们提出了一种基于等距导频的正交频分复用的改进的基于OMP的信道估计方案,该方案利用了导频补偿频率观测矢量和字典矩阵列之间的Hermitian内积特性来提供封闭的形式的路径延迟估计。此外,提出了一种由Goertzel算法促进的两步方案来搜索封闭形式估计中的样本,以进一步降低计算复杂度。仿真结果和复杂度分析证明了该方案在估计精度和计算复杂度方面的优势。

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