DocumentCode
1024495
Title
Mutually connected phase-locked loop networks: dynamical models and design parameters
Author
Orsatti, F.M. ; Carareto, R. ; Piqueira, Jose R. C.
Author_Institution
Dept. de Eng. Mec., Centro Univ. da FEI, Sao Bernardo do Campo
Volume
2
Issue
6
fYear
2008
fDate
12/1/2008 12:00:00 AM
Firstpage
495
Lastpage
508
Abstract
Distribution of timing signals is an essential factor for the development of digital systems for telecommunication networks, integrated circuits and manufacturing automation. Originally, this distribution was implemented by using the master-slave architecture with a precise master clock generator sending signals to phase-locked loops (PLL) working as slave oscillators. Nowadays, wireless networks with dynamical connectivity and the increase in size and operation frequency of the integrated circuits suggest that the distribution of clock signals could be more efficient if mutually connected architectures were used. Here, mutually connected PLL networks are studied and conditions for synchronous states existence are analytically derived, depending on individual node parameters and network connectivity, considering that the nodes are nonlinear oscillators with nonlinear coupling conditions. An expression for the network synchronisation frequency is obtained. The lock-in range and the transmission error bounds are analysed providing hints to the design of this kind of clock distribution system.
Keywords
phase locked loops; radio networks; radiofrequency integrated circuits; radiofrequency oscillators; integrated circuit; lock-in range; master clock generator; master-slave architecture; network connectivity; network synchronisation frequency; nonlinear coupling; nonlinear oscillators; phase-locked loop networks; slave oscillators; synchronous states; telecommunication networks; timing signal distribution; transmission error bound; wireless networks;
fLanguage
English
Journal_Title
Circuits, Devices & Systems, IET
Publisher
iet
ISSN
1751-858X
Type
jour
DOI
10.1049/iet-cds:20080116
Filename
4703174
Link To Document