Low-complexity and frequency-offset-robust synchronization algorithm based on CAZAC sequence
Papers|更新时间:2024-06-05
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Low-complexity and frequency-offset-robust synchronization algorithm based on CAZAC sequence
Journal on CommunicationsVol. 42, Issue 2, Pages: 64-71(2021)
作者机构:
西安电子科技大学ISN国家重点实验室,陕西 西安 710071
作者简介:
基金信息:
Youth Program of National Natural Science Foundation of China(61901325);Youth Program of National Natural Science Foundation of China(62001354);The National Key Research and Development Program of China(2018YFE0100500);China Postdoctoral Science Foundation Project(2018M640958);The Natural Science Foundation of Shaanxi Province(2019JQ-658);Technology Innovation Leading Pro-gram of Shaanxi(2019CGXNG-010);Technology Innovation Leading Pro-gram of Shaanxi(2020CGXNG-036)
Fengkui GONG, Ni WEN, Guo LI, et al. Low-complexity and frequency-offset-robust synchronization algorithm based on CAZAC sequence[J]. Journal on Communications, 2021, 42(2): 64-71.
DOI:
Fengkui GONG, Ni WEN, Guo LI, et al. Low-complexity and frequency-offset-robust synchronization algorithm based on CAZAC sequence[J]. Journal on Communications, 2021, 42(2): 64-71. DOI: 10.11959/j.issn.1000-436x.2021038.
Low-complexity and frequency-offset-robust synchronization algorithm based on CAZAC sequence
A low-complexity and frequency-offset-robust synchronization algorithm based on CAZAC sequence was proposed
which was suitable for burst OFDM systems.A new preamble sequence was constructed based on the CAZAC sequence
and its simplified timing metric function was derived by using the combination characteristics of the sequence
and then the delay correlation and symmetric correlation characteristics were used to achieve accurate and stable timing synchronization.Furthermore
based on the new constructed preamble sequence
a weighted frequency synchronization scheme combining cyclic prefix was proposed to obtain more accurate frequency offset estimation.Simulation results show that the proposed algorithm has good synchronization performance in both Gaussian channels and multipath fading channels regardless of frequency offset
and its computational complexity is lower than the most existing representative algorithms.
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references
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