VoNR-IPD: A Novel Timing-Based Network Steganography for Industrial Internet

Mingqian Wang, Shuai Cao, Yunliang Wang
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引用次数: 1

Abstract

As the predominant trade secret of manufacturing enterprises, industrial data may be monitored and stolen by competitive adversaries during the transmission via open wireless link. Such information leakage will cause severe economic losses. Hence, a VoNR-IPD covert timing steganography based on 5G network is proposed in this paper, in which VoNR traffic is employed as the steganographic carrier of covert communication in Industrial Internet. Interference of network jitter noise is fully considered and the high-order statistical properties of jittered VoNR interpacket delays (IPDs) are imitated during the modulation of confidential industrial data. Thus, the generated covert VoNR IPDs can possess consistent statistical properties with the normal case in order to improve undetectability. Besides, the synchronization mechanism of steganographic embedding mode is designed to control the embedding density of industrial data flexibly. The experimental results show that our scheme can resist statistical-based detections and the network noise effectively, which outperforms the existing methods in terms of undetectability and robustness.
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VoNR-IPD:一种新的基于时序的工业互联网网络隐写技术
工业数据作为制造企业的主要商业秘密,在通过开放无线链路传输的过程中,有可能被竞争对手监控和窃取。这种信息泄露会造成严重的经济损失。为此,本文提出了一种基于5G网络的VoNR- ipd隐蔽定时隐写方法,利用VoNR流量作为工业互联网隐蔽通信的隐写载体。充分考虑网络抖动噪声的干扰,模拟了工业机密数据调制过程中抖动VoNR包间时延(IPDs)的高阶统计特性。因此,生成的隐蔽VoNR ipd可以具有与正常情况一致的统计性质,从而提高不可检测性。设计了隐写嵌入模式的同步机制,灵活控制工业数据的嵌入密度。实验结果表明,该方法可以有效地抵抗基于统计的检测和网络噪声,在不可检测性和鲁棒性方面优于现有方法。
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