DocumentCode
1391667
Title
Cooperative phenomena observed in a globally coupled phase-locked loop system
Author
Shirahama, Hiroyuki ; Fukushima, Kazuhiro ; Kojio, Keisuke ; Yamada, Tomoji
Author_Institution
Dept. of Electr. Eng., Ube Nat. Coll. of Technol., Japan
Volume
47
Issue
8
fYear
2000
fDate
8/1/2000 12:00:00 AM
Firstpage
1265
Lastpage
1271
Abstract
The authors describe cooperative phenomena observed in a globally coupled 8-phase-locked loop (PLL) system in both experiments and simulations by using SPICE. In the present system, each PLL is connected through the coupler that averages the all PLLs´ output signals. When the frequency modulated external force is applied, three phases are observed such as (1) the coherent phase in which all subsystems are synchronized, (2) the turbulent phase in which all subsystems oscillate independently, and (3) the partially synchronized phase in which creation of clusters and chaotic itineracy due to the reconstruction of clusters occur. In the partially synchronized phase, the time series of voltage difference between arbitrary two subsystems shows an intermittency. From the statistical analysis for this intermittency it is found that the distribution functions of burst amplitude and laminar duration time show the -1 power law and -1.5 power law, respectively. These properties agree with those of the on-off intermittency. We also investigate the variation of number of cluster in the partially synchronized phase. The distribution function of the duration time of one-cluster state, namely the residence time in the state in which all subsystems are synchronized with each other, is also expressed as the -1.5 power law
Keywords
SPICE; chaos; circuit simulation; frequency modulation; phase locked loops; statistical analysis; synchronisation; time series; SPICE simulation; burst amplitude; chaotic itineracy; cluster reconstruction; coherent phase; cooperative phenomena; distribution functions; frequency modulated external force; globally coupled PLL system; laminar duration time; on-off intermittency; partially synchronized phase; phase-locked loop system; power law; residence time; statistical analysis; time series; turbulent phase; voltage difference; Chaos; Chaotic communication; Coupling circuits; Distribution functions; Frequency synchronization; Neural networks; Phase locked loops; Phase modulation; SPICE; Spatiotemporal phenomena;
fLanguage
English
Journal_Title
Circuits and Systems I: Fundamental Theory and Applications, IEEE Transactions on
Publisher
ieee
ISSN
1057-7122
Type
jour
DOI
10.1109/81.873884
Filename
873884
Link To Document