A Novel Chaotic Quantum based Homomorphic CPABE Authentication Protocol against Malicious attack in Wireless Communication Networks

B. Madhuravani, Murthy Dsr
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引用次数: 1

Abstract

With the exponential growth of network bandwidth and computational resources, data security has become one of the interesting research area in wireless communication networks. Authentication is considered as a prime concern in the field of energy-constrained wireless sensor networks due to its wide domain applications. Extensive amount of research works have been carried out to develop more secure authentication system in order to achieve confidentiality and authenticity constraints. Many authentication protocols are mainly depend upon security, scalability, communication constraints and computation overhead. Also, most of the traditional authentication models are failed to authenticate node behavior using integrity, secured key distribution and encryption models. Therefore, there is requirement of very strong authentication protocols in order to provide extended security to the WSN systems. To overcome these issues, a novel quantum chaotic key distribution (QKD) based homomorphic CPABE model was implemented in wireless communication networks. Quantum key Distribution (QKD) is required to improve the security of communication systems. The major objective of quantum key distribution is to generate a key that takes part in encryption. Experimental results proved that the proposed model has high computation speed, storage overhead and secured key distribution compared to traditional wireless authentication models.
一种新的基于混沌量子的无线通信网络中抗恶意攻击的同态CPABE认证协议
随着网络带宽和计算资源的指数级增长,数据安全已成为无线通信网络研究的热点之一。由于其广泛的应用领域,身份验证被认为是能量受限无线传感器网络领域的首要问题。为了实现机密性和真实性的约束,人们进行了大量的研究工作来开发更安全的认证系统。许多身份验证协议主要依赖于安全性、可伸缩性、通信约束和计算开销。此外,大多数传统的身份验证模型都无法使用完整性、安全密钥分发和加密模型对节点行为进行身份验证。因此,需要非常强大的身份验证协议来为WSN系统提供扩展的安全性。为了克服这些问题,在无线通信网络中实现了一种新的基于量子混沌密钥分发(QKD)的同态cabe模型。量子密钥分发(QKD)是提高通信系统安全性的必要手段。量子密钥分发的主要目的是生成参与加密的密钥。实验结果表明,与传统的无线认证模型相比,该模型具有较高的计算速度、较高的存储开销和较高的密钥分发安全性。
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