中继辅助网络中前向纠错码的安全性分析

Mehmet Ozgun Demir, Günes Karabulut-Kurt, Guido Dartmann, G. Ascheid, A. E. Pusane
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引用次数: 1

摘要

除了延迟、可靠性和能效要求外,工业无线传感器网络(iwsn)的非功能性要求还包括网络安全性和传输信息的数据保密性。物理层安全技术是在IWSN设置中存在窃听者的情况下协助加密方法的有前途的解决方案。在本文中,我们提出了一种物理层安全方案,该方案基于插入随机错误向量以转发纠错(FEC)码字和在分散中继节点上传输。选择Reed-Solomon码和Golay码作为FEC编码方案,并借助窃听者的译码错误概率对所提模型的安全性能进行评价。结果表明,该方案的安全等级与窃听者所处的位置高度相关,在窃听者与中继节点之间的某些信道噪声较大的情况下可以实现安全通信。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Security Analysis of Forward Error Correction Codes in Relay Aided Networks
Network security and data confidentiality of transmitted information are among the non-functional requirements of industrial wireless sensor networks (IWSNs) in addition to latency, reliability and energy efficiency requirements. Physical layer security techniques are promising solutions to assist cryptographic methods in the presence of an eavesdropper in IWSN setups. In this paper, we propose a physical layer security scheme, which is based on both insertion of an random error vector to forward error correction (FEC) codewords and transmission over decentralized relay nodes. Reed-Solomon and Golay codes are selected as FEC coding schemes and the security performance of the proposed model is evaluated with the aid of decoding error probability of an eavesdropper. The results show that security level is highly based on the location of the eavesdropper and secure communication can be achieved when some of channels between eavesdropper and relay nodes are significantly noisier.
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