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Automatic signature generation for polymorphic worms by combination of token extraction and sequence alignment approaches

机译:通过令牌提取和序列比对方法相结合,为多态蠕虫自动生成签名

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As modern worms spread quickly; any countermeasure based on human reaction is barely fast enough to thwart the threat. Moreover, because polymorphic worms could generate mutated instances, they are more complex than non-mutating ones. Currently, the content-based signature generation of polymorphic worms is a challenge for network security. Several signature classes have been proposed for polymorphic worms. Although previously proposed schemes consider patterns such as 1-byte invariants and distance restrictions, they could not handle neither large payloads nor the big size pool of worm instances. Moreover, they are prone to noise injection attack. We proposed a method to combine two approaches of creating a polymorphic worm signature in a new way that avoid the limitation of both approaches. The proposedsignature generation scheme is based on token extraction and multiple sequence alignment, widely used in Bioinformatics. This approach provides speed, accuracy, and flexibility in terms of noise tolerance. The evaluations demonstrate these claims.
机译:随着现代蠕虫的迅速传播;任何基于人为反应的对策都不足以阻止威胁。此外,由于多态蠕虫可以生成变异实例,因此它们比非变异蠕虫更为复杂。当前,基于内容的多态蠕虫的签名生成是网络安全的一个挑战。对于多态蠕虫,已经提出了几种签名类。尽管以前提出的方案考虑了诸如1字节不变式和距离限制之类的模式,但它们既不能处理大型有效载荷,也无法处理大型蠕虫实例池。而且,它们容易受到噪声注入攻击。我们提出了一种将两种创建多态蠕虫签名的方法结合在一起的新方法,从而避免了这两种方法的局限性。提出的签名生成方案基于令牌提取和多序列比对,已在生物信息学中广泛使用。这种方法在噪声容忍度方面提供了速度,准确性和灵活性。评估证明了这些主张。

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