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Optimal placement of training for frequency-selective block-fading channels

机译:频率选择块衰落信道的训练的最佳位置

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摘要

The problem of placing training symbols optimally for orthogonal frequency-division multiplexing (OFDM) and single-carrier systems is considered. The channel is assumed to be quasi-static with a finite impulse response of length (L + 1) samples. Under the assumptions that neither the transmitter nor the receiver knows the channel, and that the receiver forms a minimum mean square error (MMSE) channel estimate based on training symbols only, training is optimized by maximizing a tight lower bound on the ergodic training-based independent and identically distributed (i.i.d.) capacity. For OFDM systems, it is shown that the lower bound is maximized by placing the known symbols periodically in frequency. For single-carrier systems, under the assumption that the training symbols are placed in clusters of length /spl alpha/ /spl ges/ (2L + 1), it is shown that the lower bound is maximized by a family of placement schemes called QPP-/spl alpha/, where QPP stands for quasi-periodic placement. These placement schemes are formed by grouping the known symbols into as many clusters as possible and then placing these clusters periodically in the packet. For both OFDM and single-carrier systems, the optimum energy tradeoff between training and data is also obtained.
机译:考虑了针对正交频分复用(OFDM)和单载波系统最优地放置训练符号的问题。假定该信道是准静态的,具有长度(L + 1)个样本的有限脉冲响应。在发射机和接收机都不知道信道,并且接收机仅基于训练符号形成最小均方误差(MMSE)信道估计的假设下,通过最大化基于遍历训练的严格下限来优化训练独立且均匀分布的(iid)容量。对于OFDM系统,示出了通过将已知符号周期性地放置在频率中来最大化下限。对于单载波系统,假设训练符号放置在长度为/ spl alpha / / spl ges /(2L +1)的簇中,则可以通过称为QPP的一系列放置方案来最大化下限-/ spl alpha /,其中QPP表示准周期放置。通过将已知符号分组为尽可能多的群集,然后将这些群集定期放置在数据包中来形成这些放置方案。对于OFDM和单载波系统,还可以获得训练和数据之间的最佳能量折衷。

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