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首页> 外文期刊>IEEE Transactions on Signal Processing >Preamble-Based Estimation of Highly Frequency Selective Channels in FBMC/OQAM Systems
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Preamble-Based Estimation of Highly Frequency Selective Channels in FBMC/OQAM Systems

机译:FBMC / OQAM系统中基于前同步码的高频选择性信道估计

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摘要

Channel estimation in multicarrier systems employing filter banks with offset quadrature amplitude modulation (FBMC/OQAM) is far less easy compared to orthogonal frequency division multiplexing (OFDM). Challenges come from the interference effect, inherent in this type of FBMC systems, and the (generally) nonnegligible frequency selectivity of their subchannels, due to the nature of this modulation and the cyclic prefix (CP)-free transmission. Most of the FBMC/OQAM channel estimation methods rely on the assumption of a low frequency selective channel (thus implying (almost) flat subchannels) in order to more easily (i.e., in a manner analogous to CP-OFDM) tackle this problem. However, they perform quite poorly when applied in more demanding propagation conditions. Others, more recent ones, relax the assumption of low frequency selectivity but they either depend on a parametric model for the channel or they concentrate on persubchannel estimation and often require long training sequences. This paper revisits this problem through a formulation that does not rely on any simplifying assumption about the channel. This gives rise to a new estimation method, applicable to channels of any frequency selectivity, which relies on a very short preamble for training. The latter is optimized with respect to the channel estimation mean squared error and is shown to result in a very significant simplification of the estimation procedure. Both full (block-type) and sparse (comb-type) preambles are considered. Applying these results in low-dispersion channels yields, as special cases, existing and new preamble-based estimation schemes for such scenarios. The superiority of the proposed method over classical ones is demonstrated via simulation results for both mildly and highly frequency selective channels.
机译:与正交频分复用(OFDM)相比,在采用带偏移正交幅度调制(FBMC / OQAM)的滤波器组的多载波系统中,信道估计要容易得多。由于这种调制和无循环前缀(CP)传输的性质,挑战来自这种类型的FBMC系统固有的干扰效应,以及其子信道的(通常)不可忽略的频率选择性。为了更容易地(即,以类似于CP-OFDM的方式)解决该问题,大多数FBMC / OQAM信道估计方法依赖于低频选择性信道的假设(因此暗示(几乎)平坦的子信道)。但是,当在要求更高的传播条件下使用时,它们的性能会很差。其他一些(较新的)则放宽了低频选择性的假设,但它们要么依赖于信道的参数模型,要么专注于每个子信道的估计,并且通常需要较长的训练序列。本文通过不依赖于任何简化渠道假设的表述重新探讨了这个问题。这产生了一种新的估计方法,该方法适用于任何频率选择性的信道,该方法依赖于非常短的前导码进行训练。后者针对信道估计均方误差进行了优化,并显示出可大大简化估计过程。完整(块类型)和稀疏(梳子类型)前同步码均被考虑。在特殊情况下,将这些结果应用于低分散信道会产生针对此类情况的现有和新的基于前导的估计方案。通过对轻度和高频选择信道的仿真结果,证明了该方法相对于传统方法的优越性。

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