1st International ICST Conference on Communications and Networking in China

Research Article

A Stable Rapid Timing Synchronization Scheme for Impulse Radio UWB

  • @INPROCEEDINGS{10.1109/CHINACOM.2006.344773,
        author={Hongjiang  Wang and Shengming Jiang and  Gang  Wei  and  Fei  Ji},
        title={A Stable Rapid Timing Synchronization Scheme for Impulse Radio UWB},
        proceedings={1st International ICST Conference on Communications and Networking in China},
        publisher={IEEE},
        proceedings_a={CHINACOM},
        year={2007},
        month={4},
        keywords={},
        doi={10.1109/CHINACOM.2006.344773}
    }
    
  • Hongjiang Wang
    Shengming Jiang
    Gang Wei
    Fei Ji
    Year: 2007
    A Stable Rapid Timing Synchronization Scheme for Impulse Radio UWB
    CHINACOM
    IEEE
    DOI: 10.1109/CHINACOM.2006.344773
Hongjiang Wang1,2,3,*, Shengming Jiang1,2,3, Gang Wei 1,2,3, Fei Ji1,2,3
  • 1: School of Electronic and Information Engineering
  • 2: South China University of Technology
  • 3: Guangzhou, China 510640
*Contact email: eehjwang@hotmail.com

Abstract

Rapid synchronization acquisition is one of the biggest challenges of burst-mode transmission for ultra-wide band (UWB) wireless communications, especially for the impulse radio UWB (IR-UWB) due to the very short duration of the monopulse. Some rapid synchronization acquisition schemes have been proposed in the literature to reduce the mean acquisition time. However, most of them have no stability, i.e., when the delay time of arrive (TOA) for the transmitted signals becomes larger, the mean acquisition time will increase linearly. In this paper, a stable and rapid synchronization acquisition, namely selective bit reversal block search (SBRBS), is presented. The algorithm takes full advantage of the bit reversal technique, which can keep the maximum interval between the two neighboring uncertain search points to improve the detection probability and achieve a smallest search terminating time every four consecutive search points. The paper analyzes the stability of the proposed scheme in detail and makes comparison with other algorithms. Theoretical analysis and simulation results show that the proposed algorithm outperforms others in term of reduced synchronization acquisition time and increased stability.