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SASC: Secure and Authentication-Based Sensor Cloud Architecture for Intelligent Internet of Things

机译:SASC:用于智能物联网的基于安全和基于身份验证的传感器云体系结构

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摘要

Nowadays, the integration of Wireless Sensor Networks (WSN) and the Internet of Things (IoT) provides a great concern for the research community for enabling advanced services. An IoT network may comprise a large number of heterogeneous smart devices for gathering and forwarding huge data. Such diverse networks raise several research questions, such as processing, storage, and management of massive data. Furthermore, IoT devices have restricted constraints and expose to a variety of malicious network attacks. This paper presents a Secure Sensor Cloud Architecture (SASC) for IoT applications to improve network scalability with efficient data processing and security. The proposed architecture comprises two main phases. Firstly, network nodes are grouped using unsupervised machine learning and exploit weighted-based centroid vectors for the development of intelligent systems. Secondly, the proposed architecture makes the use of sensor-cloud infrastructure for boundless storage and consistent service delivery. Furthermore, the sensor-cloud infrastructure is protected against malicious nodes by using a mathematically unbreakable one-time pad (OTP) encryption scheme to provide data security. To evaluate the performance of the proposed architecture, different simulation experiments are conducted using Network Simulator (NS3). It has been observed through experimental results that the proposed architecture outperforms other state-of-the-art approaches in terms of network lifetime, packet drop ratio, energy consumption, and transmission overhead.
机译:如今,无线传感器网络(WSN)与物联网(IoT)的集成使研究界非常关注启用高级服务的情况。物联网网络可能包含大量用于收集和转发海量数据的异构智能设备。这种多样化的网络提出了一些研究问题,例如海量数据的处理,存储和管理。此外,物联网设备具有严格的限制,并容易受到各种恶意网络攻击。本文提出了一种针对物联网应用的安全传感器云架构(SASC),以通过有效的数据处理和安全性来提高网络可扩展性。所提出的体系结构包括两个主要阶段。首先,使用无监督机器学习对网络节点进行分组,并利用基于加权的质心向量来开发智能系统。其次,所提出的架构利用传感器云基础架构来实现无限存储和一致的服务交付。此外,通过使用数学上不可破解的一次性密码(OTP)加密方案来提供数据安全性,可以保护传感器云基础架构免受恶意节点的攻击。为了评估提出的体系结构的性能,使用网络模拟器(NS3)进行了不同的模拟实验。通过实验结果已经观察到,在网络寿命,数据包丢包率,能耗和传输开销方面,所提出的体系结构优于其他最新技术。

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