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A payload-based mutual authentication scheme for Internet of Things

机译:基于有效负载的物联网双向认证方案

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摘要

The Internet of Things (IoT) is a vision that broadens the scope of the Internet by incorporating physical objects to identify themselves to the participating entities. This innovative concept enables a physical object to represent itself in the digital world. There have been a lot of speculations and future forecasts about these physical objects connected with the Internet, however, most of them lack secure features and are vulnerable to a wide range of attacks. Miniature sensor nodes, embedded in these physical objects, limit the support for computationally complex and resource-consuming secured algorithms. In this paper, we propose a lightweight mutual authentication scheme for the real-world physical objects of an IoT environment. It is a payload-based encryption scheme which uses a simple four-way handshake mechanism to verify the identities of the participating objects. The real-world objects communicate with each other using the client–server interaction model. Our proposed scheme uses the lightweight features of Constrained Application Protocol (CoAP) to enable the clients to observe resources residing on the server, in an energy-efficient manner. We use Advanced Encryption Standard (AES), with a key length of128bits, to establish a secured session for resource observation. We evaluate our scheme for a real-world scenario using NetDuino Plus 2 boards. Our scheme is computationally efficient, incurs less connection overhead and at the same time, provides a robust defence against various attacks such as, resource exhaustion, Denial-of-Service, replay and physical tampering.
机译:物联网(IoT)是一种愿景,它通过合并物理对象以向参与实体标识自己来扩展Internet的范围。这一创新概念使物理对象能够在数字世界中展现自己。关于与Internet连接的这些物理对象有很多猜测和未来的预测,但是,其中大多数缺乏安全功能,并且容易受到广泛的攻击。嵌入在这些物理对象中的微型传感器节点限制了对计算复杂且消耗资源的安全算法的支持。在本文中,我们针对物联网环境的实际物理对象提出了一种轻量级的相互身份验证方案。它是基于有效负载的加密方案,它使用简单的四次握手机制来验证参与对象的身份。真实世界的对象使用客户端-服务器交互模型相互通信。我们提出的方案使用约束应用协议(CoAP)的轻量级功能,使客户端能够以节能的方式观察服务器上的资源。我们使用密钥长度为128位的高级加密标准(AES)来建立用于观察资源的安全会话。我们使用NetDuino Plus 2板评估我们的方案以用于实际场景。我们的方案计算效率高,产生的连接开销更少,同时,针对各种攻击(例如资源耗尽,拒绝服务,重放和物理篡改)提供了强大的防御能力。

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