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Analysis and Performance Evaluation of a K-Symbol Pilot Assisted Channel Estimator using Linear Interpolation for OFDM Systems

机译:OFDM系统中使用线性插值的K符号导频辅助信道估计器的分析和性能评估

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In this work, the performance of a novel linear interpolator scheme that uses K successive orthogonal frequency division multiplexing (OFDM) symbols is examined. The estimator collects K successive OFDM symbols to create a virtual super symbol (VSS) with K-P pilots using P pilots from each OFDM symbol. The (K - 1) middot P pilots are shifted in frequency in such way that in the VSS their distance is divided by K compared to standard symbols. Successive least squares (SLS) channel estimation through linear interpolation is performed by using more than one symbol in the LS estimator introducing the weight channel change (WCC) factor that represents the change of the wireless channel between the successive symbols used. A novel analysis deriving exact expressions for the mean square error (MSE) as a function of pilot spacing, channel statistics and WCC for an OFDM system where data subcarriers also exist before the first and after the last pilot is given. The MSE and the bit error rate (BER) of the estimator are characterized by the number and distance of the pilots, the Doppler spread and the WCC factor. Simulations show the effect of each factor on MSE and BER performance.
机译:在这项工作中,研究了使用K个连续的正交频分复用(OFDM)符号的新型线性内插器方案的性能。估计器收集K个连续的OFDM符号,以使用来自每个OFDM符号的P个导频来创建具有K-P个导频的虚拟超级符号(VSS)。 (K-1)个中点P导频以这样的方式进行频移:与标准符号相比,它们在VSS中的距离除以K。通过线性插值的连续最小二乘(SLS)信道估计是通过在LS估计器中使用多个符号执行的,该符号引入了权重信道变化(WCC)因子,该因子表示所使用的连续符号之间无线信道的变化。一种新颖的分析方法得出了均方误差(MSE)的精确表达式,它是OFDM系统的导频间隔,信道统计量和WCC的函数,在该系统中,在给出第一个导频和最后一个导频之前还存在数据子载波。估计器的MSE和误码率(BER)由导频的数量和距离,多普勒扩展和WCC因子来表征。仿真显示了每个因素对MSE和BER性能的影响。

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