Title :
ATM LAN interconnections with a cut-through nonblocking switch
Author :
Sheu, Tsang-Ling
Author_Institution :
IBM Corp., Research Triangle Park, NC, USA
Abstract :
The paper presents a cut through ATM switch with shared buffers for LAN interconnections. The incoming ATM cells are not stored into shared buffers as long as the destination output port is available. In other words, an ATM cell is waiting at the input port. It will be passed through the switch using a cut through link, if the destination output port is available. On the other hand, it will be stored into the switch´s shared buffers, if the destination output port is busy and the buffers are not full. Performance measures in terms of the end to end ATM cell delay, the switch cell delay, and the average number of cells queued in the shared buffers (defined as the required buffer size) are evaluated through simulation. In the simulation, it is assumed that the traffic load on each switch port is increased from 4 token rings (64 Mbps or 20% of port capacity) to 16 token rings (256 Mbps or 80% of port capacity). A simple model, based on the mean queue length of destination output ports, is used to analytically quantify the busy status of output ports. The simulation results point out that an ATM switch with cut through capability can significantly reduce the mean cell delay and the required buffer size, even when the probability of cells that can be cut through is very small
Keywords :
LAN interconnection; asynchronous transfer mode; buffer storage; switches; token networks; ATM LAN interconnections; buffer size; busy status; cut through ATM switch; cut through link; cut-through nonblocking switch; destination output port; internetworking; mean cell delay; mean queue length of destination output ports; performance measures; shared buffers; simulation results; switch cell delay; switch port; token rings; traffic load; Asynchronous transfer mode; Buffer storage; Communication switching; Delay; LAN interconnection; Local area networks; Switches; Telecommunication traffic; Token networks; Traffic control;
Conference_Titel :
Computers and Communications, 1995., Conference Proceedings of the 1995 IEEE Fourteenth Annual International Phoenix Conference on
Conference_Location :
Scottsdale, AZ
Print_ISBN :
0-7803-2492-7
DOI :
10.1109/PCCC.1995.472435