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A Low-Complexity Joint Time Synchronization and Channel Estimation Scheme for Orthogonal Frequency Division Multiplexing Systems

机译:正交频分复用系统的低复杂性关节时间同步和信道估计方案

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In this paper, a novel training sequence structure along with a joint time synchronization and channel estimation scheme for orthogonal frequency division multiplexing (OFDM) systems is proposed. The proposed training sequence structure is composed of an orthogonal sequence attached by cyclic prefix and cyclic postfix. Both the lengths of the cyclic extensions attached are chosen to be longer than the maximum delay spread of the wireless channel. Based on the unique structure of the training sequence, we present a low-complexity joint time synchronization and channel estimation scheme. Unlike conventional methods, which require either discrete Fourier transform (DFT) operations or matrix inversions to acquire channel impulse response (CIR) information, the proposed scheme requires only a correlator and a comparator. At the expense of the same training sequence overheads, computer simulation results show that the proposed joint scheme outperforms conventional time synchronization methods by orders. Furthermore, the overall bit error rate (BER) performance of the proposed joint scheme is shown to be close to the ultimate bound characterized by perfect synchronization and channel estimation. The proposed joint scheme also provides significant BER performance gain as compared to a scheme that properly combines a conventional synchronization method with a DFT-based channel estimation method.
机译:本文提出了一种新颖的训练序列结构以及用于正交频分复用(OFDM)系统的联合时间同步和信道估计方案。所提出的训练序列结构由循环前缀和循环后晶片附加的正交序列组成。连接的循环延伸的长度都被选择为长于无线信道的最大延迟扩展。基于训练序列的独特结构,我们呈现了一种低复杂性的关节时间同步和信道估计方案。与需要离散傅里叶变换(DFT)操作或矩阵逆转的传统方法不同,所提出的方案仅需要相关器和比较器。以相同的训练序列开销为代价,计算机仿真结果表明,所提出的联合方案优于常规时间同步方法按顺序更优于传统的时间同步方法。此外,所提出的联合方案的总体误码率(BER)性能被示出为接近通过完美同步和信道估计的终极束缚。拟议的联合方案还提供了显着的BER绩效收益,相比具有与基于DFT的信道估计方法合并传统同步方法的方案。

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