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A Covert Communication Model Based on IPv6 Multicast

机译:基于IPv6组播的秘密通信模型

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Covert communication using Internet Protocol version 6 (IPv6) header fields can be easily detected. By thoroughly exploring the characteristics of IPv6 multicast, this study proposes a novel covert communication model based on IPv6 multicast (MCv6). In this model, a multicast group, containing a large number of members across different subnets, is created to hide the receiver's network ID, thereby achieving covert communications. To ensure the security of this covert communication, a random key generation algorithm, based on the chaotic sequence, is proposed to encrypt communication packets. To ensure the legitimacy of covert communications, a multicast source authentication mechanism based on hash comparison is proposed to verify the legitimacy of communication source nodes. To ensure the integrity of covert communications, a two-stage error control mechanism is proposed to control the possible packet-loss and other errors. Theoretical analysis and simulation results show that the proposed MCv6 model can provide good IPv6-based covert communications, efficiently reducing the probability of detection, and ensuring the security and reliability of the IPv6-based medium.
机译:可以很容易地检测到使用Internet协议版本6(IPv6)头字段的秘密通信。通过深入研究IPv6组播的特性,本研究提出了一种基于IPv6组播(MCv6)的新型秘密通信模型。在此模型中,创建了一个包含大量跨不同子网的成员的多播组,以隐藏接收者的网络ID,从而实现秘密通信。为了保证这种秘密通信的安全性,提出了一种基于混沌序列的随机密钥生成算法对通信包进行加密。为了保证秘密通信的合法性,提出了一种基于哈希比较的组播源认证机制,以验证通信源节点的合法性。为了确保秘密通信的完整性,提出了一种二级错误控制机制来控制可能的丢包和其他错误。理论分析和仿真结果表明,提出的MCv6模型可以提供良好的基于​​IPv6的隐蔽通信,有效地降低了检测的概率,并确保了基于IPv6的介质的安全性和可靠性。

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