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Intrusion Detection Over Encrypted Network Data

机译:加密网络数据的入侵检测

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摘要

Effective protection against cyber-attacks requires constant monitoring and analysis of system data in an IT infrastructure, such as log files and network packets, which may contain private and sensitive information. Security operation centers (SOC), which are established to detect, analyze and respond to cyber-security incidents, often utilize detection models either for known types of attacks or for anomaly and applies them to the system data for detection. SOC are also motivated to keep their models private to capitalize on the models that are their propriety expertise, and to protect their detection strategies against adversarial machine learning. In this paper, we develop a protocol for privately evaluating detection models on the system data, in which privacy of both the system data and detection models is protected and information leakage is either prevented altogether or quantifiably decreased. Our main approach is to provide an end-to-end encryption for the system data and detection models utilizing lattice-based cryptography that allows homomorphic operations over ciphertext. We employ recent data sets in our experiments which demonstrate that the proposed privacy-preserving intrusion detection system is feasible in terms of execution times and bandwidth requirements and reliable in terms of accuracy.
机译:对网络攻击的有效保护需要对IT基础架构中的系统数据进行持续监测和分析,例如日志文件和网络数据包,其可能包含私有和敏感信息。建立用于检测,分析和响应网络安全事件的安全操作中心(SOC)通常利用已知类型的攻击或异常的检测模型,并将它们应用于系统数据进行检测。 SOC也是为了使他们的模型私有化,以利用它们适当专业知识的模型,并保护他们对抗对抗机器学习的检测策略。在本文中,我们开发了一种用于私人评估系统数据的检测模型的协议,其中保护系统数据和检测模型的隐私,并且完全防止了信息泄漏或量化或量化。我们的主要方法是为系统数据和检测模型提供利用基于格子的密码术的系统数据和检测模型提供端到端加密,这允许在密文上进行同性恋操作。我们在我们的实验中采用了最近的数据集,表明建议的隐私式入侵检测系统在执行时间和带宽要求方面是可行的,并且在准确性方面可靠。

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