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An efficient homomorphic MAC-based scheme against data and tag pollution attacks in network coding-enabled wireless networks

机译:支持网络编码的无线网络中的数据和标签污染攻击的基于高效的同性恋的基于模式

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Recent research efforts have shown that wireless networks can benefit from network coding (NC) technology in terms of bandwidth, robustness to packet losses, delay and energy consumption. However, NC-enabled wireless networks are susceptible to a severe security threat, known as data pollution attack, where a malicious node injects into the network polluted packets that prevent the destination nodes from decoding correctly. Due to recoding, occurred at the intermediate nodes, according to the core principle of NC, the polluted packets propagate quickly into other packets and corrupt bunches of legitimate packets leading to network resource waste. Hence, a lot of research effort has been devoted to schemes against data pollution attacks. Homomorphic MAC-based schemes are a promising solution against data pollution attacks. However, most of them are susceptible to a new type of pollution attack, called tag pollution attack, where an adversary node randomly modifies tags appended to the end of the transmitted packets. Therefore, in this paper, we propose an efficient homomorphic message authentication code-based scheme, called HMAC, providing resistance against data pollution attacks and tag pollution attacks in NC-enabled wireless networks. Our proposed scheme makes use of three types of homomorphic tags (i.e., MACs, D-MACs and one signature) which are appended to the end of the coded packet. Our results show that the proposed HMAC scheme is more efficient compared to other competitive tag pollution immune schemes in terms of complexity, communication overhead and key storage overhead.
机译:最近的研究努力表明,无线网络在带宽方面可以从网络编码(NC)技术中受益,鲁棒性与分组损失,延迟和能量消耗。然而,启用了NC的无线网络易于严重的安全威胁,称为数据污染攻击,其中恶意节点注入网络污染数据包,该数据包阻止目的地节点正确地解码。由于重新编码,在中间节点发生,根据NC的核心原理,污染数据包快速传播到其他数据包和损坏的合法数据包,导致网络资源浪费。因此,许多研究努力已经致力于针对数据污染袭击的计划。均匀基于MAC的方案是对数据污染攻击的有希望的解决方案。然而,大多数人都易于一种新型的污染攻击,称为标签污染攻击,其中,对手节点随机修改附加到传输分组结束的标签。因此,在本文中,我们提出了一种效率的基于同性恋消息认证码的方案,称为HMAC,提供了对支持NC的无线网络中的数据污染攻击和标签污染攻击的阻力。我们所提出的方案利用三种类型的同种形态标签(即,Mac,D-Mac和一个签名),该标签附加到编码数据包的末尾。我们的研究结果表明,与复杂性,通信开销和关键储存开销方面的其他竞争标签污染免疫计划相比,该提议的HMAC方案更有效。

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