DocumentCode
1920981
Title
Scalable Cyber-Security for Terabit Cloud Computing
Author
Ros-Giralt, J. ; Szilagyi, Peter ; Lethin, R.
Author_Institution
Reservoir Labs., Inc., New York, NY, USA
fYear
2012
fDate
10-16 Nov. 2012
Firstpage
1607
Lastpage
1616
Abstract
This paper addresses the problem of scalable cyber-security using a cloud computing architecture. Scalability is treated in two contexts: (1) performance and power efficiency and (2) degree of cyber security-relevant information detected by the cyber-security cloud (CSC). We provide a framework to construct CSCs, which derives from a set of fundamental building blocks (forwarders, analyzers and grounds) and the identification of the smallest functional units (atomic CSC cells or simply aCS C cells) capable of embedding the full functionality of the cyber-security cloud. aCSC cells are then studied and several high-performance algorithms are presented to optimize the system\´s performance and power efficiency. Among these, a new queuing policy - called tail early detection (TED) - is introduced to proactively drop packets in a way that the degree of detected information is maximized while saving power by avoiding spending cycles on less relevant traffic components. We also show that it is possible to use aCSC cells as core building blocks to construct arbitrarily large cyber-security clouds by structuring the cells using a hierarchical architecture. To demonstrate the utility of our framework, we implement one cyber-security "mini-cloud" on a single chip prototype based on the Tilera\´s TILEPro64 processor demonstrating performance of up to 10Gbps.
Keywords
cloud computing; computer network security; parallel processing; power aware computing; queueing theory; telecommunication traffic; TED; Tilera TILEPro64 processor; aCSC cells; atomic CSC cells; cloud computing architecture; cyber security-relevant information; cyber-security cloud; cyber-security mini-cloud; detected information; fundamental building blocks; hierarchical architecture; high-performance algorithms; power efficiency; proactive packet dropping; queuing policy; scalable cyber-security; single chip prototype; spending cycles; system performance; tail early detection; terabit cloud computing; traffic components; cloud computing; cyber-security; energy efficient; high speed networks; many-core processors;
fLanguage
English
Publisher
ieee
Conference_Titel
High Performance Computing, Networking, Storage and Analysis (SCC), 2012 SC Companion:
Conference_Location
Salt Lake City, UT
Print_ISBN
978-1-4673-6218-4
Type
conf
DOI
10.1109/SC.Companion.2012.338
Filename
6496124
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