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Using predators to combat worms and viruses: a simulation-based study

机译:使用捕食者对抗蠕虫和病毒:基于模拟的研究

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Large-scale attacks generated by fast-spreading or stealthy malicious mobile code, such as flash worms and e-mail viruses, demand new approaches to patch management and disinfection. Currently popular centralized approaches suffer from distribution bottlenecks which cannot be solved by merely increasing the number of servers, as the number of servers required to eliminate all bottlenecks is impractically large. Recently, predators were proposed as a technique for eliminating automated mobile malware from computer networks. Predators are benevolent, self-propagating mobile programs which have the ability to clean up systems infected by malignant worms/viruses. We propose a number of extensions to the original predator model, including immunizing predators, persistent predators, and seeking predators. We report on a set of simulations which explore the effects of predators on small-scale (800 to 1600 node) networks. Our results indicate that predators hold significant promise as an alternative to the centralized patch distribution mechanism. The results show that predators can be used to disinfect systems and distribute patches rapidly across the network, without suffering from bottlenecks or causing network congestion. The results also show that the new predator models provide significant benefits over the original predator model. The simulation tool is also useful for tuning predator behavior, so that an optimal tradeoff between the peak virus/worm infection rate and the overhead generated by the predator can be chosen before a predator is released.
机译:通过快速扩展或隐身恶意移动代码产生的大规模攻击,例如Flash蠕虫和电子邮件病毒,需要新的补丁管理和消毒方法。目前流行的集中方法遭受分布瓶颈,仅仅通过增加服务器的数量,不能解决,因为消除所有瓶颈所需的服务器的数量是不切实际的。最近,捕食者被提出为从计算机网络中消除自动移动恶意软件的技术。捕食者是仁慈的,自宣传的移动程序,具有清理恶性蠕虫/病毒感染的系统的能力。我们向原始捕食者模型提出了许多扩展,包括免疫捕食者,持久的捕食者和寻求捕食者。我们报告了一系列模拟,探讨了捕食者对小规模(800到1600节点)网络的影响。我们的结果表明,掠夺者认为是集中式补丁分配机制的替代方案的重大承诺。结果表明,捕食者可用于消毒系统并在网络上快速分配斑块,而不会遭受瓶颈或导致网络拥塞。结果还表明,新的捕食器模型在原始捕食器模型中提供了显着的益处。仿真工具对于调谐捕食者行为也是有用的,因此在释放捕食者之前可以选择峰值病毒/蠕虫感染率和由捕食者产生的开销之间的最佳折衷。

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