DocumentCode :
297322
Title :
A 160-Gb/s ATM switching system using an internal speed-up crossbar switch
Author :
Genda, Kouichi ; Doi, Yukihiro ; Endo, Kenichi ; Kawamura, Tomoaki ; Sasaki, Shinichi
Author_Institution :
NTT Network Service Syst. Labs., Tokyo, Japan
fYear :
1994
fDate :
28 Nov- 2 Dec 1994
Firstpage :
123
Abstract :
A 160 Gb/s ATM switching system handling sixteen 10-Gb/s input lines is constructed by using an internal speed-up crossbar switch. The switch is structured around an input/output buffering switch architecture, high-speed bipolar devices and multichip module technology. The switch adopts a bufferless crossbar network realized with high-speed bipolar devices and cell buffers only on each input and output line. Using a separate architecture to link the bufferless routing network to the cell buffers, 20 Gb/s high-speed cell transmission can be easily realized in the crossbar network. In addition, a new high-speed arbitration algorithm using three bus lines on each output line, named the bi-directional arbiter, is adopted. The bi-directional arbiter is about 1.5 times faster than the conventional ring-arbiter and has the same fairness function. Using the switching system, a sub-tera-bit/s ATM switching system can be achieved in a significant step towards broadband ISDN
Keywords :
B-ISDN; asynchronous transfer mode; bipolar digital integrated circuits; buffer storage; electronic switching systems; multichip modules; telecommunication network routing; 10 Gbit/s; 160 Gbit/s; 20 Gbit/s; ATM switching system; bi-directional arbiter; broadband ISDN; bufferless crossbar network; bufferless routing network; bus lines; cell buffers; crossbar network; fairness function; high-speed arbitration algorithm; high-speed bipolar devices; high-speed cell transmission; input line; input/output buffering switch architecture; internal speed-up crossbar switch; multichip module technology; output line; Asynchronous transfer mode; B-ISDN; Communication switching; Laboratories; Multichip modules; Routing; Switches; Switching systems; Throughput; Very large scale integration;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Global Telecommunications Conference, 1994. GLOBECOM '94. Communications: The Global Bridge., IEEE
Conference_Location :
San Francisco, CA
Print_ISBN :
0-7803-1820-X
Type :
conf
DOI :
10.1109/GLOCOM.1994.513394
Filename :
513394
Link To Document :
بازگشت