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首页> 外文期刊>International journal of pervasive computing and communications >Lightweight security scheme for IoT applications using CoAP
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Lightweight security scheme for IoT applications using CoAP

机译:使用CoAP的物联网应用的轻量级安全方案

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Purpose - The purpose of this paper is to study lightweight security scheme for Internet of Things (IoT) applications using Constrained Application Protocol (CoAP). Resource-constrained characteristics of IoT systems have ushered in compelling requirements for lightweight application protocol and security suites. CoAP has already been established as the candidate protocol for IoT systems. However, low overhead security scheme for CoAP is still an open problem. Existing security solutions like Datagram Transport Layer Security (DTLS) is not suitable, particularly due to its expensive handshaking, public key infrastructure (PKI)-based authentication and lengthy ciphersuite agreement process. Design/methodology/approach - This paper proposes a lightweight security scheme in CoAP using Advanced Encryption Standard (AES) 128 symmetric key algorithm. The paper presents an object security (payload embedded)-based robust authentication mechanism with integrated key management. The paper introduces few unique modifications to CoAP header to optimize security operation and minimize communication cost. Findings - It is resilient to number of security attacks like replay attack, meet-in-the-middle attack and secure under chosen plaintext attack. This scheme is generic in nature, applicable for gamut of IoT applications. The paper proves efficacy of our proposed scheme for vehicle tracking application in emulated laboratory setup. Specifically, it compares with DTLS-enabled CoAP to establish the lightweight feature of our proposed solution. Research limitations/implications - This paper mainly focuses on implementing in-vehicle tracking systems as an IoT application and used CoAP as the application protocol. Practical implications - Such a lightweight security scheme would provide immense benefit in IoT systems so that resource constraint-sensing devices and nodes can be made secure. This would impact IoT eco systems to a large extent. Originality/value - Such kind of security suite that provides both robustness and lightweight feature is hitherto not known to the authors, particularly in CoAP for IoT applications.
机译:目的-本文的目的是研究使用约束应用协议(CoAP)的物联网(IoT)应用的轻量级安全方案。物联网系统的资源受限特征已经引发了对轻量级应用协议和安全套件的迫切要求。 CoAP已经被确立为物联网系统的候选协议。但是,用于CoAP的低开销安全方案仍然是一个未解决的问题。诸如数据报传输层安全性(DTLS)之类的现有安全性解决方案不适合使用,特别是由于其昂贵的握手,基于公钥基础结构(PKI)的身份验证以及冗长的密码套件协议过程。设计/方法/方法-本文提出了使用高级加密标准(AES)128对称密钥算法的CoAP中的轻量级安全方案。本文提出了一种基于对象安全性(有效载荷嵌入)的,具有集成密钥管理的鲁棒认证机制。本文介绍了对CoAP标头的一些独特修改,以优化安全性操作并最小化通信成本。调查结果-它可以抵抗多种安全攻击,例如重播攻击,中间相遇攻击和在选择的纯文本攻击下的安全性。该方案本质上是通用的,适用于整个物联网应用。本文证明了我们提出的在模拟实验室设置中的车辆跟踪应用方案的有效性。具体来说,它与启用了DTLS的CoAP进行了比较,以建立我们提出的解决方案的轻量级功能。研究的局限性/意义-本文主要侧重于将车载跟踪系统实现为IoT应用程序,并使用CoAP作为应用程序协议。实际意义-这种轻量级的安全方案将在IoT系统中提供巨大的好处,从而可以使资源约束感知设备和节点变得安全。这将在很大程度上影响物联网生态系统。独创性/价值-这种提供鲁棒性和轻量级功能的安全套件迄今尚未为作者所知,特别是在IoT应用的CoAP中。

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