DocumentCode :
2271376
Title :
Reverse Hashing for High-Speed Network Monitoring: Algorithms, Evaluation, and Applications
Author :
Schweller, Robert ; Li, Zhichun ; Chen, Yan ; Gao, Yan ; Gupta, Ashish ; Zhang, Yin ; Dinda, Peter ; Kao, Ming-Yang ; Memik, Gokhan
Author_Institution :
Dept. of Electr. Eng. & Comput. Sci., Northwestern Univ., Evanston, IL
fYear :
2006
fDate :
23-29 April 2006
Firstpage :
1
Lastpage :
12
Abstract :
A key function for network traffic monitoring and analysis is the ability to perform aggregate queries over multiple data streams. Change detection is an important primitive which can be extended to construct many aggregate queries. The recently proposed sketches (Krishnamurthy, 2003) are among the very few that can detect heavy changes online for high speed links, and thus support various aggregate queries in both temporal and spatial domains. However, it does not preserve the keys (e.g., source IP address) of flows, making it difficult to reconstruct the desired set of anomalous keys. In an earlier abstract we proposed a framework for a reversible sketch data structure that offers hope for efficient extraction of keys (Schweller, 2004). However, this scheme is only able to detect a single heavy change key and places restrictions on the statistical properties of the key space. To address these challenges, we propose an efficient reverse hashing scheme to infer the keys of culprit flows from reversible sketches. There are two phases. The first operates online, recording the packet stream in a compact representation with negligible extra memory and few extra memory accesses. Our prototype single FPGA board implementation can achieve a throughput of over 16 Gbps for 40-byte-packet streams (the worst case). The second phase identifies heavy changes and their keys from the representation in nearly real time. We evaluate our scheme using traces from large edge routers with OC-12 or higher links. Both the analytical and experimental results show that we are able to achieve online traffic monitoring and accurate change/intrusion detection over massive data streams on high speed links, all in a manner that scales to large key space size. To the best of our knowledge, our system is the first to achieve these properties simultaneously.
Keywords :
cryptography; data structures; field programmable gate arrays; statistical analysis; telecommunication network management; telecommunication security; telecommunication traffic; FPGA; change detection; change/intrusion detection; edge routers; high speed links; high-speed network monitoring; network traffic monitoring; online traffic monitoring; reverse hashing; reversible sketch data structure; statistical properties; Aggregates; Change detection algorithms; Data mining; Data structures; Field programmable gate arrays; High-speed networks; Monitoring; Performance analysis; Prototypes; Telecommunication traffic;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
INFOCOM 2006. 25th IEEE International Conference on Computer Communications. Proceedings
Conference_Location :
Barcelona
ISSN :
0743-166X
Print_ISBN :
1-4244-0221-2
Type :
conf
DOI :
10.1109/INFOCOM.2006.203
Filename :
4146856
Link To Document :
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