Intelligent Mobile Edge Computing Integrated with Blockchain Security Analysis for Millimetre-Wave Communication

K. Priyadarsini, S. Chandana, Severo Simón Calderón Samaniego, M. G. Chaudhary, V. Vekariya, A. Chaturvedi
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Abstract

 With the increase in number of devices enabled the Internet of Things (IoT) communication with the centralized cloud computing model. With the implementation of the cloud computing model leads to increased Quality of Service (QoS). The cloud computing model provides the edge computing technologies for the real-time application to achieve reliability and security. Edge computing is considered the extension of the cloud computing technology involved in transfer of the sensitive information in the cloud edge to increase the network security. The real-time data transmission realizes the interaction with the high frequency to derive improved network security. However, with edge computing server security is considered as sensitive privacy information maintenance. The information generated from the IoT devices are separated based on stored edge servers based on the service location. Edge computing data is separated based in edge servers for the guaranteed data integrity for the data loss and storage. Blockchain technologies are subjected to different security problem for the data integrity through integrated blockchain technologies. This paper developed a Voted Blockchain Elliptical Curve Cryptography (VBECC) model for the millimetre wave application. The examination of the blockchain model is evaluated based on the edge computing architecture. The VBECC model develop an architectural model based Blockchain technology with the voting scheme for the millimetre application. The estimated voting scheme computes the edge computing technologies for the estimation of features through ECC model. The VBECC model computes the security model for the data transmission in the edge computing-based millimetre application. The experimental analysis stated that VBECC model uses the data security model ~8% increased performance than the conventional technique.
集成区块链的智能移动边缘计算毫米波通信安全分析
随着设备数量的增加,启用了物联网(IoT)与集中式云计算通信的模式。随着云计算模型的实现,导致服务质量(QoS)的提高。云计算模型为实时应用提供边缘计算技术,实现可靠性和安全性。边缘计算被认为是云计算技术的延伸,涉及在云边缘传输敏感信息以提高网络安全性。实时数据传输实现了与高频的交互,提高了网络的安全性。然而,在边缘计算中,服务器安全被认为是敏感隐私信息的维护。物联网设备生成的信息根据服务位置根据存储的边缘服务器进行分离。边缘计算数据基于边缘服务器进行分离,以保证数据的完整性,避免数据丢失和存储。通过集成区块链技术,区块链技术在数据完整性方面面临着不同的安全问题。本文提出了一种用于毫米波应用的椭圆曲线加密(VBECC)模型。基于边缘计算架构对区块链模型的检验进行了评估。VBECC模型开发了一种基于区块链技术的体系结构模型,具有毫米级应用的投票方案。估计投票方案通过ECC模型计算边缘计算技术来估计特征。VBECC模型计算了基于边缘计算的毫米应用中数据传输的安全模型。实验分析表明,VBECC模型采用了数据安全模型,性能比传统技术提高了8%左右。
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