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A New DFT-Based Channel Estimation Approach for OFDM with Virtual Subcarriers by Leakage Estimation

机译:一种基于DFT的带有虚拟子载波的OFDM泄漏估计的信道估计新方法

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摘要

Equidistance in pilot spacing is an essential condition for discrete Fourier transform (DFT)-based channel estimation in OFDM systems. However, virtual subcarriers break this condition, degrade the estimation performance, and cause the interference (called ''''leakage'') because the orthogonality of Fourier matrix is broken. To solve this problem, we first analyze the leakage using the DFT-inverse DFT process. The pilot subcarriers inside virtual subcarriers area are estimated by the inverse of the estimated leakage. Thus, the equidistance condition is satisfied. The proposed estimator operates well in realistic environment such as IEEE 802.16, and it is robust to an increase of virtual subcarriers.
机译:导频间隔的等距是OFDM系统中基于离散傅里叶变换(DFT)的信道估计的必要条件。然而,由于傅立叶矩阵的正交性被破坏,虚拟子载波打破了这种条件,降低了估计性能,并引起了干扰(称为“泄漏”)。为了解决这个问题,我们首先使用DFT逆DFT过程分析泄漏。虚拟子载波区域内的导频子载波通过估计泄漏的倒数来估计。因此,满足了等距条件。所提出的估计器在诸如IEEE 802.16的现实环境中运行良好,并且对于增加虚拟子载波具有鲁棒性。

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