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Mitigation of Control Channel Jamming under Node Capture Attacks

机译:缓解节点捕获攻击下的控制信道干扰

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摘要

Availability of service in many wireless networks depends on the ability for network users to establish and maintain communication channels using control messages from base stations and other users. An adversary with knowledge of the underlying communication protocol can mount an efficient denial of service attack by jamming the communication channels used to exchange control messages. The use of spread spectrum techniques can deter an external adversary from such control channel jamming attacks. However, malicious colluding insiders or an adversary who captures or compromises system users is not deterred by spread spectrum, as they know the required spreading sequences. For the case of internal adversaries, we propose a framework for control channel access schemes using the random assignment of cryptographic keys to hide the location of control channels. We propose and evaluate metrics to quantify the probabilistic availability of service under control channel jamming by malicious or compromised users and show that the availability of service degrades gracefully as the number of colluding insiders or compromised users increases. We propose an algorithm called GUIDE for the identification of compromised users in the system based on the set of control channels that are jammed. We evaluate the estimation error using the GUIDE algorithm in terms of the false alarm and miss rates in the identification problem. We discuss various design trade-offs between robustness to control channel jamming and resource expenditure.
机译:许多无线网络中服务的可用性取决于网络用户使用来自基站和其他用户的控制消息来建立和维护通信信道的能力。了解底层通信协议的对手可以通过阻塞用于交换控制消息的通信通道来发起有效的拒绝服务攻击。扩频技术的使用可以阻止外部对手受到这种控制信道的干扰攻击。但是,恶意勾结的内部人员或捕获或损害系统用户的对手并不会被扩频所阻止,因为他们知道所需的扩频序列。对于内部对手,我们提出了一个控制信道访问方案的框架,该方案使用加密密钥的随机分配来隐藏控制信道的位置。我们提出并评估度量标准,以量化恶意或受感染用户在控制信道阻塞下服务的概率可用性,并显示随着共谋内部人员或受感染用户数量的增加,服务的可用性会适当降低。我们提出了一种称为GUIDE的算法,用于根据阻塞的控制通道集来识别系统中的受感染用户。我们使用GUIDE算法根据识别问题中的虚警率和遗漏率评估估计误差。我们讨论了控制信道干扰的鲁棒性和资源消耗之间的各种设计折衷。

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