Title :
Self-synchronization of second order PLLs in communication networks
Author :
Tanaka, Hisa-Aki ; De Sousa Vieira, Maria ; Lichtenberg, Allan J. ; Lieberman, Michael A. ; Oishi, Shin´ichi
Author_Institution :
Waseda Univ., Tokyo, Japan
Abstract :
Synchronous, distributed timing clocks are the basic building blocks in digital communication systems. Conventional systems mainly employ a tree-like network of cascaded timing clocks for synchronous clocking. On the other hand, decentralized, synchronous networks of timing clocks, which have been proposed from a very early stage of the digital communication, are gaining attention in the consumer communication networks and also recently in VLSI clocking. In this paper, we present a theoretical study of synchronous networks of timing clocks consisting of locally connected second order phase-locked loops (PLLs). We find a close connection between the stability properties of the first and second order networks. The particular examples of one way and two way nearest neighbor coupling, with a lag-lead filter and a triangular phase detector (PD) are analyzed in detail. Both the synchronized in-phase solution and the wave-like “mode-lock” solution are examined. A criterion is found for the stability of the one-way coupled network while the two way coupled network is found to be always stable. The existence of a wave-like state is undesirable in synchronizing networks, but may be removed by its destabilization
Keywords :
digital communication; phase locked loops; stability; stability criteria; synchronisation; telecommunication networks; timing; communication networks; digital communication systems; lag-lead filter; nearest neighbor coupling; one-way coupled network; second order PLLs; self-synchronization; stability properties; synchronized in-phase solution; synchronous distributed timing clocks; triangular phase detector; two way coupled network; wave-like mode-lock solution; Clocks; Communication networks; Digital communication; Filters; Nearest neighbor searches; Phase locked loops; Stability; Synchronization; Timing; Very large scale integration;
Conference_Titel :
Circuits and Systems, 1996. ISCAS '96., Connecting the World., 1996 IEEE International Symposium on
Conference_Location :
Atlanta, GA
Print_ISBN :
0-7803-3073-0
DOI :
10.1109/ISCAS.1996.541820