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Joint Maximum Likelihood Timing, Frequency Offset, and Doubly Selective Channel Estimation for OFDM Systems

机译:关节最大似然定时,频率偏移和OFDM系统的双重选择性信道估计

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This paper presents a novel preamble-aided method for joint estimation of timing, carrier frequency offset, and channel for orthogonal frequency division multiplexing systems that operate in high-mobility situations. Basis expansion modeling (BEM) that captures the time variations of the channel is used to reduce the number of unknown channel parameters. The BEM coefficients along with timing and frequency offsets are estimated by using amaximum likelihood approach. An efficient algorithm is then proposed for reducing the computational complexity of the joint estimation. The complexity of the new method is assessed in terms of the number of multiplications. The mean square estimation error of the proposed method is evaluated in comparison with previous methods and the hybrid Cramer-Rao lower bound, indicating a remarkable performance improvement by the new method.
机译:本文介绍了一种新的前导辅助方法,用于联合估计在高移动性情况下操作的正时,载波频率偏移和用于正交频分复用系统的信道。 基础扩展建模(BEM)捕获信道的时间变化用于减少未知信道参数的数量。 通过使用Amaximum似然方法估计BEM系数以及定时和频率偏移。 然后提出了一种有效的算法来降低关节估计的计算复杂性。 根据乘法的数量评估新方法的复杂性。 与先前的方法和混合克拉姆 - RAO下限相比,评估所提出的方法的平均方形估计误差,表明新方法的显着性能改善。

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