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A Time-domain Phase Noise Mitigation Algorithm for OFDM Systems in the Wireless Backhaul Links

机译:无线回程链路中OFDM系统的时域相位噪声缓解算法

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摘要

The oscillator phase noise (PN) is one of the bottlenecks toward increasing the modulation order in the OFDM-based wireless backhaul links. This paper presents an algorithm to overcome this barrier through a novel time-domain iterative phase noise mitigation method. In the first step, by leveraging the high signal-to-noise ratio of the backhaul links, the PN estimation problem in the OFDM system is formulated similar to the PN estimation in the single carrier system, for which several solutions are proposed in the literature. Subsequently, a decision directed approach is used to solve this estimation problem, which relies on the linear interpolation of refined estimates of the PN. The proposed algorithm secures a significant improvement in the phase noise suppression of the OFDM systems in the high signal-to-noise-ratio regime. By requiring small pilot overhead while avoiding computationally complex operations in the algorithm’s iterations, the proposed method is tailored specially for the OFDM-based wireless backhaul links. Numerical results verify the effectiveness of proposed PN mitigation scheme.
机译:振荡器相位噪声(PN)是朝向基于OFDM的无线回程链路中的调制顺序的瓶颈之一。本文介绍了一种通过新型时域迭代相位噪声缓解方法克服该屏障的算法。在第一步中,通过利用回程链路的高信噪比,OFDM系统中的PN估计问题与单载波系统中的PN估计相似,在文献中提出了几种解决方案。随后,使用决策定向方法来解决该估计问题,其依赖于PN的精细估计的线性插值。所提出的算法在高信噪比范围内确定OFDM系统的相位噪声抑制的显着改善。通过在避免算法的迭代中避免计算复杂操作的同时需要小型导频开销,所提出的方法是专门针对基于OFDM的无线回程链路量身定制的方法。数值结果验证了所提出的PN缓解方案的有效性。

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