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A broadcast authentication scheme in IoT environments

机译:物联网环境中的广播认证方案

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Broadcast authentication has been widely investigated in the context of wireless sensor networks, Internet, RFIDs, and other scenarios. With the emergence of the Internet of Things that allows to connect different wireless technologies to provide services, broadcast authentication is crucial. Broadcast authentication aims to confirm that the sender of the message is the pretended source. In this direction, different state of the art proposals address this problem either by reducing the communication and overhead burden of security solutions, or by reducing the impact of attacks that aim to jeopordize the effectiveness of the service. In this paper, we propose an improved authentication scheme that is efficient for resource constrained devices. In particular, we shed the light into the security vulnerabilities of lightweight authentication mechanisms and their inability to tackle memory DoS attacks. Hence, we propose an improved scheme derived from the streamlined μTESLA, referred to as X-μTESLA. We demonstrate through our analytical and simulation results that X-μTESLA reduces communication overhead and yields a better performance in terms of energy consumption, memory overhead, and authentication delay than its previous counterparts.
机译:在无线传感器网络,Internet,RFID和其他情况下,广播身份验证已得到广泛研究。随着允许连接不同无线技术来提供服务的物联网的出现,广播身份验证至关重要。广播身份验证旨在确认消息的发送者是伪装的源。在这个方向上,不同的技术建议要么通过减少安全解决方案的通信和开销负担,要么通过减少旨在损害服务有效性的攻击的影响来解决此问题。在本文中,我们提出了一种改进的认证方案,该方案对于资源受限的设备非常有效。特别是,我们揭示了轻量级身份验证机制的安全漏洞以及它们无法应对内存DoS攻击。因此,我们提出了一种改进的方案,该方案源自简化的μTESLA,称为X-μTESLA。通过分析和仿真结果,我们证明X-μTESLA减少了通信开销,并在能耗,内存开销和身份验证延迟方面比以前的同类产品具有更好的性能。

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