DocumentCode
3426806
Title
STR application in the NTT network
Author
Inoue, Akiya
Author_Institution
NTT, Tokyo, Japan
fYear
1997
fDate
1-3 Jul 1997
Firstpage
483
Abstract
Summary form only given, as follows. NTT has proposed a hybrid controlled dynamic routing scheme, state- and time-dependent routing (STR). The purpose of STR is to achieve high performance despite unpredictable real-time traffic fluctuations with minimum changes to switching software and operations systems. STR uses an appropriate combination of the two kinds of control, centralized and distributed. In the STR network, a set of alternate routes between each origin-destination node pair is determined on a time-dependent basis by a control center using a centralized control method. For call-level routing, state-dependent routing is achieved by using a distributed control method to determine an alternate route for each overflow call. Such distributed control routing schemes are now being called event-dependent routing. In 1992, the transition to a dynamic routing network, the STR network, began in the Tokyo metropolitan area. The extension of this STR network to the NTT long-distance network was completed in 1995. So far, the network has proven to be robust against traffic variation and facility failure. In the NTT long-distance network, the new network control and administration system has also been developed and implemented. This system aims at realizing efficient flow-through among control, administration and engineering processes. The processes for generating and controlling routing patterns for STR are carried out in this system. The author gives an overview of STR and the current STR network. It then describes the performance of STR with some examples from the NTT network and issues facing the STR network
Keywords
centralised control; distributed control; telecommunication control; telecommunication network routing; NTT long-distance network; NTT network; STR application; Tokyo metropolitan area; administration; call-level routing; centralized control; distributed control; dynamic routing network; event-dependent routing; hybrid controlled dynamic routing scheme; origin-destination node pair; performance; real-time traffic fluctuations; state- and time-dependent routing; Application software; Centralized control; Communication system traffic control; Control systems; Distributed control; Fluctuations; Real time systems; Routing; Software performance; Software systems;
fLanguage
English
Publisher
ieee
Conference_Titel
Computers and Communications, 1997. Proceedings., Second IEEE Symposium on
Conference_Location
Alexandria
Print_ISBN
0-8186-7852-6
Type
conf
DOI
10.1109/ISCC.1997.616048
Filename
616048
Link To Document