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Cyclic Prefix Based Time Synchronization and Comb Type Channel Estimation for SC-FDMA Systems over Time-Varying Channels

机译:基于循环前缀的SC-FDMA系统在时变通道上的梳理类型信道估计

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In the long term evolution (LTE) uplink systems, reference signals based on Zadoff-Chu sequences are employed for time synchronization and block type channel estimation because the pilots are inserted into all the subcarriers of one single carrier-frequency division multiple access (SC-FDMA) symbol with a certain period. The block-type channel estimation can be adopted for slowly fading channel while the channel can be considered as stationary within a certain period of SC-FDMA symbols. However, in practice, a wideband radio channel is time-variant and the channel estimation errors based on block-type channel estimation will significantly degrade the performance of SC-FDMA systems in fast fading environments. Therefore, in this paper, the maximum likelihood (ML) time synchronization and comb-type channel estimation for SC-FDMA systems is presented. We demonstrated that the proposed system has significant bit error rate (BER) advantages over fast varying environments.
机译:在长期演进(LTE)上行链路系统中,基于Zadoff-Chu序列的参考信号用于时间同步和块类型信道估计,因为导频被插入一个单个载波频率划分多址的所有子载波(SC- FDMA)符号,具有一定时期。可以采用块型信道估计来缓慢衰落信道,而信道可以在SC-FDMA符号的一定时间内被认为是静止的。然而,在实践中,宽带无线电信道是时变量,基于块型信道估计的信道估计误差将显着降低SC-FDMA系统在快速衰落环境中的性能。因此,在本文中,介绍了SC-FDMA系统的最大似然(ML)时间同步和梳型信道估计。我们证明,所提出的系统在快速变化的环境中具有显着的比特错误率(BER)优势。

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