DocumentCode
2306738
Title
High performance integrated network communications architecture (INCA)
Author
Schug, Klaus ; Jayasumana, Anura ; Gopalakrishnan, Prasanth
Author_Institution
MiTech Inc., Silver Spring, MD, USA
fYear
1998
fDate
11-14 Oct 1998
Firstpage
172
Lastpage
181
Abstract
Current communication subsystem mechanisms within workstation and PC class computers are limiting network communication throughput to a percentage of the present network data rates. Though CPU and computer network speeds increased by more than an order of magnitude, the execution rate of computer functions and applications requiring network communications have increased only marginally. An integrated network communications architecture (INCA) is presented that is interoperable with all existing programs, computers and networks, and scales with network and CPU speeds. The INCA architecture minimizes internal system limitations and provides application level, as opposed to network interface level, internal machine data throughput rates near those of high speed network transmission rates. Test results of a software implementation of the INCA architecture on actual systems and networks are presented that show a 260% to 760% improvement in the application level throughput of network communicated data of workstation and PC class computers
Keywords
computer networks; network operating systems; open systems; INCA; application level internal machine data throughput rates; communication subsystem mechanisms; high performance integrated network communications architecture; internal system limitations; network communication throughput; software implementation; Application software; Central Processing Unit; Computer applications; Computer architecture; Computer networks; High-speed networks; Network interfaces; Software testing; Throughput; Workstations;
fLanguage
English
Publisher
ieee
Conference_Titel
Local Computer Networks, 1998. LCN '98. Proceedings., 23rd Annual Conference on
Conference_Location
Lowell, MA
ISSN
0742-1303
Print_ISBN
0-8186-8810-6
Type
conf
DOI
10.1109/LCN.1998.727658
Filename
727658
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