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  1. Proceedings of the 2003 workshop on New security paradigms (NSPW '03)
  2. Alliance formation for DDoS defense
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Locality: a new paradigm for thinking about normal behavior and outsider threat
SELF: a transparent security extension for ELF binaries
Bringing security home: a process for developing secure and usable systems
Secure object identification: or: solving the Chess Grandmaster Problem
Towards a new paradigm for securing wireless sensor networks
Alliance formation for DDoS defense
Dynamic label binding at run-time
Security check: a formal yet practical framework for secure software architecture
Public key distribution through "cryptoIDs"
Securing nomads: the case for quarantine, examination, and decontamination
Merging paradigms of survivability and security: stochastic faults and designed faults
From absence of certain vulnerabilities towards security proofs: pushing the limits of formal verification
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Alliance formation for DDoS defense

Content Provider ACM Digital Library
Author Mirkovic, Jelena Reiher, Peter Robinson, Max
Abstract Currently, there is no effective defense against large-scale distributed denial-of-service (DDoS) attacks. While numerous DDoS defense systems exist that offer excellent protection from specific attack types and scenarios, they can frequently be defeated by an attacker aware of their weaknesses. A necessary requirement for successful DDoS defense is wide deployment, but none of these systems can guarantee wide deployment simply because deployment depends more on market and social aspects than on the technical performance of the system.To successfully handle the DDoS threat we must abandon the current paradigm---the design of defense systems that operate in isolation---and shift toward a new paradigm, a distributed framework of heterogeneous systems that cooperate to achieve an effective defense. Heterogeneity is dictated by two major factors. First, the necessary requirements for a successful defense are detection, response and traffic differentiation. These requirements must be met at disjoint points in the Internet and require a disjoint set of functionalities from the defense systems. Second, heterogeneity is dictated by the current state of the DDoS defense field in which numerous systems exist that can offer similar performance and compete for market share. In this paper we show how the paradigm shift can be accomplished quickly and painlessly through the design of DefCOM, a distributed framework that enables the exchange of information and services between existing defense nodes.
Starting Page 11
Ending Page 18
Page Count 8
File Format PDF
ISBN 1581138806
DOI 10.1145/986655.986658
Language English
Publisher Association for Computing Machinery (ACM)
Publisher Date 2003-08-13
Publisher Place New York
Access Restriction Subscribed
Content Type Text
Resource Type Article
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