Design and Development of Integrated, Secured and Intelligent Architecture for Internet of Things and Cloud Computing

T. Daisy, Premila Bai, S. Rabara
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引用次数: 20

Abstract

Internet of Things (IoT) and Cloud Computing paradigm is a next wave in the era of computing and it has been identified as one of the emerging technologies in the field of Computer Science and Information Technology. It has been understood from the review reports that integration of IoT and Cloud Computing is in its infantile phase and it has not been extended to all application domains due to its inadequate security architecture. Hence, in this paper a novel integrated secured and intelligent architecture for the Internet of Things and Cloud Computing is proposed. This is a unique intelligent architecture adoptable for the public to access diversified smart applications and services distributed in the cloud, anywhere, anytime, any device and any network irrespective of the underlying technologies in a smart environment. The cloud services are integrated and connected through a novel IP/MPLS (Internet Protocol/Multiprotocol Label Switching) core. Elliptic Curve Cryptography (ECC) is used to ensure complete protection against the security risks such as confidentiality, integrity, privacy and authentication. This model eliminates ambiguity, ensures security with enhanced performance and realizes the vision of "one intelligent smart card for any applications and transactions". The performance of the proposed architecture is tested by establishing a test bed in a simulated environment and the results are reported.
物联网与云计算集成、安全、智能架构设计与开发
物联网和云计算范式是计算时代的下一波浪潮,已被确定为计算机科学与信息技术领域的新兴技术之一。从审查报告中了解到,物联网与云计算的融合尚处于起步阶段,由于安全架构不完善,尚未扩展到所有应用领域。因此,本文提出了一种全新的物联网和云计算安全智能集成架构。这是一种独特的智能架构,可以让公众在智能环境中,无论底层技术如何,随时随地、任何设备、任何网络,都可以访问分布在云端的多样化智能应用和服务。云服务通过新颖的IP/MPLS(互联网协议/多协议标签交换)核心进行集成和连接。采用椭圆曲线加密(Elliptic Curve Cryptography,简称ECC),可以全面防范机密性、完整性、隐私性、认证等安全风险。这种模式消除了歧义,以增强的性能保证了安全性,实现了“一张智能智能卡适用于任何应用和交易”的愿景。通过在仿真环境中搭建测试平台,对所提体系结构的性能进行了测试,并给出了测试结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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