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OPRF Secure Computation for Safety Neighbor Verification Protocols of Wireless Sensor Networks

机译:无线传感器网络安全邻居验证协议的OPRF安全计算

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摘要

Due to the resource limitations of sensor nodes, providing security protocols is a particular challenge in sensor networks. A popular proposed method is the neighborhood based key agreement protocol (NEKAP), which is an improvement over the well-known Localized Encryption and Authentication Protocol (LEAP). NEKAP is an efficient and light-weight protocol, but includes loopholes through which adversaries may launch replay attack by successfully masquerading as legitimate nodes and thereby compromise the communications over the network. In this paper, we present a modified security protocol for wireless sensor networks. Secure computation protocol for Naor-Reingold pseudorandom function was studied and a more efficient protocol was proposed based on multiplicative homomorphic encryption in this article. Based on the novel protocol, two private pattern matching protocol was designed. Also the improvement on the performance is discussed and analyzed on several typical attacks found in wireless sensor networks, i.e., replay attack. The performance verification through using a qualitative analysis indicates that our new security protocol can enhance the security resilience of wireless sensor networks better than the conventional methods.
机译:由于传感器节点的资源限制,提供安全协议是传感器网络中的一个特殊挑战。一种流行的提议方法是基于邻域的密钥协商协议(NEKAP),它是对众所周知的本地化加密和认证协议(LEAP)的改进。 NEKAP是一种高效且轻量级的协议,但包含漏洞,攻击者可以通过漏洞成功伪装成合法节点,从而发起重放攻击,从而破坏网络上的通信。在本文中,我们提出了一种针对无线传感器网络的修改后的安全协议。研究了Naor-Reingold伪随机函数的安全计算协议,并提出了基于乘法同态加密的更有效协议。基于该新协议,设计了两种私有模式匹配协议。还针对无线传感器网络中发现的几种典型攻击,即重播攻击,讨论并分析了性能的提高。通过定性分析进行的性能验证表明,与传统方法相比,我们的新安全协议可以更好地增强无线传感器网络的安全弹性。

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