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A Two-Flights Mutual Authentication for Energy-Constrained IoT Devices

机译:用于能量受限的物联网设备的双航相互认证

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Authentication is a fundamental part of essential security operations and is a cornerstone for the Internet of Things (IoT) security. In this work an energy-efficient and secure mutual authentication protocol is proposed for constrained IoT devices wherein a combination of RC5 (Rivest Cipher) and ECC (Elliptic Curve Cryptography) cryptosystems are used. The protocol is implemented, and its functionality is verified on Zolertia RE-mote IoT devices. It supports secure data transmission along with authentication. Unlike existing schemes, mutual authentication in the proposed protocol is achieved with only two flights between client and server. The security against most common attacks is analysed, furthermore energy consumption of our protocol is evaluated and compared with existing protocol e.g. DTLS handshake. Our protocol saves up to 57% energy compared to the DTLS handshake protocol per authentication cycle.
机译:身份验证是基本安全运营的基本部分,是用于互联网(物联网)安全的基石。在这项工作中,提出了一种节能和安全的相互认证协议,用于约束的物联网设备,其中使用RC5(RIVEST密码)和ECC(椭圆曲线加密)密码系统的组合。实现协议,并在ZoLertia重新模拟物联网设备上验证其功能。它支持安全数据传输以及身份验证。与现有方案不同,在客户端和服务器之间只有两个航班,实现了所提出的协议中的相互身份验证。分析了针对大多数常见攻击的安全性,进一步评估了我们协议的能量消耗,并与现有协议进行了比较。 DTLS握手。与每个认证周期的DTLS握手协议相比,我们的协议可节省高达57%的能量。

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