DocumentCode
2897693
Title
The Bio-Networking Architecture: a biologically inspired approach to the design of scalable, adaptive, and survivable/available network applications
Author
Wang, Michael ; Suda, Tatsuya
Author_Institution
California Univ., Irvine, CA, USA
fYear
2001
fDate
2001
Firstpage
43
Lastpage
53
Abstract
We believe that the challenges faced by future network applications, such as scalability, adaptability, and survivability/availability, have already been overcome by large scale biological systems and that future network applications will benefit by adopting key biological principles and mechanisms. Our initial effort at applying biological principles and mechanisms to the design and implementation of network applications has produced the Bio-Networking Architecture. In the Bio-Networking Architecture, a collection of autonomous mobile agents, called cyber-entities, are used to implement an application. The desirable characteristics of an application, i.e. scalability, adaptability, and survivability/availability, emerge from the collective actions and interactions of its constituent cyber-entities. We describe a Web content distribution application called Aphid, and show through simulations that Aphid adapts to changing user demand and location. Aphid´s scalability and survivability/availability are also demonstrated
Keywords
Internet; biocomputing; distributed programming; information resources; software agents; Aphid; Bio-Networking Architecture; Web content distribution application; adaptability; availability; biologically inspired approach; cyber-entities; mobile agents; scalability; simulation; survivable network applications; user demand; Adaptive control; Biological system modeling; Biological systems; Buildings; Centralized control; Evolution (biology); Large-scale systems; Middleware; Mobile agents; Scalability;
fLanguage
English
Publisher
ieee
Conference_Titel
Applications and the Internet, 2001. Proceedings. 2001 Symposium on
Conference_Location
San Diego, CA
Print_ISBN
0-7695-0942-8
Type
conf
DOI
10.1109/SAINT.2001.905167
Filename
905167
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