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Optimal Delay Estimation for Phase-Rotated Linearly Interpolative Channel Estimation in OFDM and OFDMA Systems

机译:OFDM和OFDMA系统中相位旋转线性插值信道估计的最佳延迟估计

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We consider the phase-rotated linearly interpolative channel estimation technique for multicarrier transmission. The technique models the channel frequency response between two nearby subcarriers as the product of a linear function and a linear-phase factor, where the linear-phase factor may be equivalently modeled in the time domain as a reference delay dubbed the anchor delay in this work. We show that the performance of the technique is a fourth-order function of the channel path delays and the anchor delay. We derive a method to estimate the optimal anchor delay. Analysis and simulation in a context of Mobile WiMAX downlink transmission show that, with the proposed anchor delay estimate, we can attain better performance in channel estimation than conventional linear interpolation and a previously proposed method of phase-compensated linear interpolation.
机译:我们考虑了用于多载波传输的相位旋转线性内插信道估计技术。该技术将两个附近子载波之间的信道频率响应建模为线性函数和线性相位因子的乘积,其中线性相位因子可以在时域中等效建模为参考延迟,该参考延迟被称为锚延迟。 。我们表明,该技术的性能是信道路径延迟和锚点延迟的四阶函数。我们推导了一种估计最佳锚定延迟的方法。在移动WiMAX下行链路传输的上下文中的分析和仿真表明,与传统的线性插值和先前提出的相位补偿线性插值方法相比,有了建议的锚点延迟估计,我们可以获得更好的信道估计性能。

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