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An efficient ECC-based mechanism for securing network coding-based P2P content distribution - Springer

机译:基于ECC的高效机制,可确保基于网络编码的P2P内容分发-Springer

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Network coding has been demonstrated to be able to improve the performance of P2P content distribution. However, it is vulnerable to pollution attacks where malicious peers can flood the network with corrupted blocks easily, leading to substantial performance degradation. Moreover, existing corruption detection schemes for network coding are not well suited to P2P systems. Effective scheme to detect the corruption and identify the attacker is required to thwart such attacks. In this paper, we propose an efficient ECC-based mechanism for securing network coding-based P2P content distribution, namely ESNC, which includes an efficient network coding signature scheme and an identity-based malicious peer identification scheme. The two schemes cooperate to thwart pollution attacks on network coding effectively in P2P networks, not only detecting corrupted blocks on-the-fly efficiently, but also precisely identifying all the malicious peers quickly. ESNC is mainly based on elliptic curve cryptography (ECC) and can provide high level of security. It incurs significantly less computation and communication overheads than other comparable state-of-the-art schemes for P2P systems. ESNC can work with arbitrary topologies, as it is the case in P2P networks. Security analysis demonstrates that ESNC can resist hash collision attacks, signature forgery attacks, and collusion attacks with arbitrary number of colluding malicious peers. Simulation results show that ESNC effectively limits the corruption spread and identifies all the malicious peers in a short time under different practical settings.
机译:网络编码已被证明能够改善P2P内容分发的性能。但是,它容易受到污染攻击,在恶意攻击中,恶意对等方很容易将损坏的块泛洪到网络中,从而导致性能大幅下降。此外,现有的用于网络编码的损坏检测方案不太适合P2P系统。需要一种有效的方案来检测腐败并识别攻击者,以阻止此类攻击。在本文中,我们提出了一种用于保护基于网络编码的P2P内容分发的基于ECC的高效机制,即ESNC,它包括一个有效的网络编码签名方案和一个基于身份的恶意对等身份识别方案。这两种方案可以有效地阻止P2P网络中对网络编码的污染攻击,不仅可以有效地实时检测损坏的块,还可以快速准确地识别所有恶意对等体。 ESNC主要基于椭圆曲线加密(ECC),可以提供高级别的安全性。与P2P系统的其他同类先进技术相比,它所产生的计算和通信开销明显更少。 ESNC可以使用任意拓扑,例如P2P网络中的情况。安全分析表明,ESNC可以抵抗任意数量的共谋恶意对等方抵抗哈希冲突攻击,签名伪造攻击和共谋攻击。仿真结果表明,在不同的实际情况下,ESNC可以有效地限制腐败蔓延,并在短时间内识别出所有恶意节点。

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