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Sparsity-aware, channel order-blind pilot placement with channel estimation in orthogonal frequency division multiplexing systems

机译:正交频分复用系统中具有信道估计的稀疏感知,信道盲盲导频放置

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摘要

Equispaced pilot arrangement is the most popular scheme for pilot-aided transmission in orthogonal frequency division multiplexing systems. In this study, the authors argue that a non-equispaced pilot pattern may outperform its equispaced counterpart, if they fully take into account the sparsity of the channel impulse response which is inherent in wireless channels. More specifically, a sparsity-aware pilot arrangement scheme based on the coherence criterion is investigated in this study. To address the resulting non-deterministic polynomial (NP)-hard combinatorial optimisation problem, they propose an efficient local search algorithm. For channel estimation, they convert it to a sparse recovery problem. To enhance the applicability of the authors scheme, that is, when there is no prior knowledge about the channel order, they propose to employ the Bayesian information criterion to estimate the channel order first and then recover the sparse channel vector via existing low-complexity methods, for example, orthogonal matching pursuit. By combining the above pilot arrangement scheme with channel estimation, their scheme exhibits substantially better performance in comparison with the conventional equispaced schemes with linear (or spline) interpolation, in terms of total number of pilot symbols and bit error rate.
机译:等距导频布置是正交频分复用系统中用于导频辅助传输的最流行方案。在这项研究中,作者认为,如果非等距导频模式充分考虑了无线信道固有的信道冲激响应的稀疏性,则其性能可能优于等距的导频模式。更具体地说,本研究中研究了基于相干性准则的稀疏感知导频安排方案。为了解决由此产生的不确定性多项式(NP)-硬组合优化问题,他们提出了一种有效的局部搜索算法。为了进行信道估计,他们将其转换为稀疏恢复问题。为了增强作者方案的适用性,也就是说,当没有关于信道顺序的先验知识时,他们建议采用贝叶斯信息准则先估计信道顺序,然后通过现有的低复杂度方法恢复稀疏的信道向量。 ,例如正交匹配追踪。通过将上述导频布置方案与信道估计相结合,就导频符号的总数和误码率而言,与具有线性(或样条)插值的常规等距方案相比,它们的方案表现出明显更好的性能。

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