Abstract | ||
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Available bit rate and ATM block transfer capabilities are the essential ATM transfer capabilities to be implemented in the public network in respect of the traffic characteristics and bandwidth utilization. Therefore, one of two ATM transfer capabilities is implemented in the public switching system and the other ATM transfer capability can be accommodated using the interoperability mechanism. In this paper, we propose the interworking and emulation methods for the interoperability of available bit rate/ATM block transfer capability depending on the closed-loop range of each ATM transfer capability and also propose the block cell rate re-negotiation with state dependent mechanism based on the common buffer with two thresholds when the public switching system has the ATM block transfer capability. We analyze the performance of the block cell rate re-negotiation with state dependent mechanism from the view points of the maximum queue length and bandwidth utilization |
Year | DOI | Venue |
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1997 | 10.1109/ICC.1997.609981 | ICC (2) |
Keywords | Field | DocType |
open systems,interoperability mechanism,atm block transfer capability,interworking,available bit rate,telecommunication congestion control,queueing theory,bandwidth utilization,abr/abt capability,maximum queue length,asynchronous transfer mode,telecommunication traffic,public switching system,closed-loop rate based control,closed loop systems,atm public network,traffic characteristics,state dependent mechanism,emulation methods,block cell rate re-negotiation,emulation,bandwidth,intelligent networks | Computer science,Interoperability,Queue,Computer network,Real-time computing,Asynchronous Transfer Mode,Queueing theory,Emulation,ATM adaptation layer,Open system (systems theory),Atmosphere (unit) | Conference |
Volume | ISBN | Citations |
2 | 0-7803-3925-8 | 0 |
PageRank | References | Authors |
0.34 | 3 | 4 |
Name | Order | Citations | PageRank |
---|---|---|---|
Woo-seop Rhee | 1 | 3 | 1.28 |
An Yoon-young | 2 | 45 | 5.62 |
Hwa-Suk Kim | 3 | 2 | 1.41 |
Hong-Shik Park | 4 | 111 | 21.11 |