Communications and Networking. 12th International Conference, ChinaCom 2017, Xi’an, China, October 10-12, 2017, Proceedings, Part II

Research Article

On Low-Pass Phase Noise Mitigation in OFDM System for mmWave Communications

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  • @INPROCEEDINGS{10.1007/978-3-319-78139-6_28,
        author={Xiaoming Chen and Wei Fan and Anxue Zhang},
        title={On Low-Pass Phase Noise Mitigation in OFDM System for mmWave Communications},
        proceedings={Communications and Networking. 12th International Conference, ChinaCom 2017, Xi’an, China, October 10-12, 2017, Proceedings, Part II},
        proceedings_a={CHINACOM},
        year={2018},
        month={4},
        keywords={Phase noise mitigation mmWave communications OFDM systems},
        doi={10.1007/978-3-319-78139-6_28}
    }
    
  • Xiaoming Chen
    Wei Fan
    Anxue Zhang
    Year: 2018
    On Low-Pass Phase Noise Mitigation in OFDM System for mmWave Communications
    CHINACOM
    Springer
    DOI: 10.1007/978-3-319-78139-6_28
Xiaoming Chen1,*, Wei Fan2,*, Anxue Zhang1,*
  • 1: Xi’an Jiaotong University
  • 2: Aalborg University
*Contact email: xiaoming.chen@mail.xjtu.edu.cn, wfa@es.aau.dk, anxuezhang@mail.xjtu.edu.cn

Abstract

A phase noise (PN) mitigation scheme was proposed for orthogonal frequency division multiplexing (OFDM) in a previous work. The proposed scheme does not require detailed knowledge of PN statistics and can effectively compensate the PN with sufficient number of unknowns. In this paper, we analyze the performance of PN estimation/mitigation using the proposed scheme. It is shown that increasing the number of unknowns reduces the modeling error, yet increases the additive noise. Hence, increasing the number of unknowns increases the computational complexity and can even degrade the estimation performance. It is also shown that the PN spectral shape of the phase-locked-loop (PLL) based oscillator also affects the PN mitigation and that a larger PN may not necessarily degrade the performance of the OFDM system with PN mitigation. Simulations with realistic millimeter-wave (mmWave) PN and channel models are conducted to verify these findings.