中国邮电高校学报(英文) ›› 2012, Vol. 19 ›› Issue (3): 68-73.doi: 10.1016/S1005-8885(11)60267-7

• Networks • 上一篇    下一篇

Full frequency-phase synchronization for physical-layer distributed clocks

郭威,郑霖,仇洪冰   

  1. Guilin University of Electronic Technology
  • 收稿日期:2011-11-11 修回日期:2012-03-16 出版日期:2012-06-30 发布日期:2012-06-08
  • 通讯作者: 郭威 E-mail:raygoodwill@163.com
  • 基金资助:

    协同无线网络中分布式同步技术研究;无线传感器网络中脉冲同步技术研究

Full frequency-phase synchronization for physical-layer distributed clocks

  1. Guilin University of Electronic Technology
  • Received:2011-11-11 Revised:2012-03-16 Online:2012-06-30 Published:2012-06-08
  • Contact: Wei GUO E-mail:raygoodwill@163.com

摘要:

In wireless networks, the majority of cooperative communications rely on the high-accuracy timing synchronization among isolated nodes. However, most presented physical-layer distributed synchronization algorithms so far cannot satisfy the requirement for real applications. To realize frequency and phase synchronization of distributed clocks, i.e., full synchronization, inspired by the character of the proportional plus integral controller that it may help an unstable system be a no steady-state error one, a new loop structure of distributed discrete phase-locked loop (PLL) is designed. Furthermore, by using algebraic graph theory, the convergence of this scheme is analyzed for both directed and undirected networks, and full synchronization is proved to be reached. Simulation results are given to corroborate the proposed algorithm and analysis.

关键词:

cooperative communication, wireless network, distributed synchronization, phase-locked loop

Abstract:

In wireless networks, the majority of cooperative communications rely on the high-accuracy timing synchronization among isolated nodes. However, most presented physical-layer distributed synchronization algorithms so far cannot satisfy the requirement for real applications. To realize frequency and phase synchronization of distributed clocks, i.e., full synchronization, inspired by the character of the proportional plus integral controller that it may help an unstable system be a no steady-state error one, a new loop structure of distributed discrete phase-locked loop (PLL) is designed. Furthermore, by using algebraic graph theory, the convergence of this scheme is analyzed for both directed and undirected networks, and full synchronization is proved to be reached. Simulation results are given to corroborate the proposed algorithm and analysis.

Key words:

cooperative communication, wireless network, distributed synchronization, phase-locked loop