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首页> 外文期刊>International journal of communication systems >Codeword Authenticated Key Exchange (CAKE) light weight secure routing protocol for WSN
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Codeword Authenticated Key Exchange (CAKE) light weight secure routing protocol for WSN

机译:Codeword经过身份验证的密钥交换(Cake)WSN的重量级安全路由协议

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摘要

Wireless Sensor Network (WSN) is developing rapidly and used extensively in various critical applications like military, health, environment etc. Sometimes, the WSN is indiscriminately deployed in unattended hostile terrains such as border or remote region where besides energy efficiency, security is another important issue to be addressed. The adversary can have unauthorised access which can lead to tampering, modification, interception, eavesdropping etc. With the intention of improving the energy efficacy of WSN, clustering methods are developed, but dynamic behaviour of sensor nodes with limited storage and processing makes security a more challenging problem as resource intensive security solutions are not feasible in practical scenario. Key management is capable of addressing this problem by protecting the network from different attacks. In this paper, a highly secure Codeword Authenticated Key Exchange (CAKE) protocol is proposed which is based on one-way hashing with one time password and codeword authentication. BAN logic and Random Oracle Model are used for formal proof, and AVISPA tool is used for simulating the proposed work. CAKE is compared with other existing mutual authentication schemes which depicts significant reduction in computational time and energy consumption. The proposed protocol preserves Confidentiality, Integrity, and mutual authentication and can counter several attacks like offline guessing attack, replay attack, Dos attack, impersonation attack etc. and preserve perfect forward secrecy making the protocol suitable for various WSN applications.
机译:无线传感器网络(WSN)正在快速开发,并在各种关键应用中广泛使用,如军事,健康,环境等。有时,WSN在无人看管的敌对地形中不分内部部署,如边境或偏远地区,安全性是另一个重要的问题要解决。对手可以有未经授权的访问,这可能导致篡改,修改,拦截,窃听等。随着改善WSN的能量功效,开发了聚类方法,但存储和处理有限的传感器节点的动态行为使得安全性更高充满挑战的问题作为资源密集型安全解决方案在实际情况下不可行。主要管理能够通过保护网络从不同的攻击保护网络来解决此问题。在本文中,提出了一种高度安全的码字经过认证的密钥交换(CAKE)协议,其基于单向散列与一次密码和码字认证。禁止逻辑和随机Oracle模型用于正式证明,Avispa工具用于模拟所提出的工作。将蛋糕与其他现有的相互认证方案进行比较,其描绘了计算时间和能量消耗的显着降低。拟议的议定书保留了机密性,完整性和相互认证,可以根据离线猜测攻击,重播攻击,DOS攻击,模拟攻击等进行衡量若干攻击,并保留完善的前向保密,使适用于各种WSN应用的协议。

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