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LAM-CIoT: Lightweight authentication mechanism in cloud-based IoT environment

机译:LAM-CIoT:基于云的物联网环境中的轻量级身份验证机制

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Internet of Things (IoT) becomes a new era of the Internet, which consists of several connected physical smart objects (i.e., sensing devices) through the Internet. IoT has different types of applications, such as smart home, wearable devices, smart connected vehicles, industries, and smart cities. Therefore, IoT based applications become the essential parts of our day-to-day life. In a cloud-based IoT environment, cloud platform is used to store the data accessed from the IoT sensors. Such an environment is greatly scalable and it supports realtime event processing which is very important in several scenarios (i.e., IoT sensors based surveillance and monitoring). Since some applications in cloud-based IoT are very critical, the information collected and sent by IoT sensors must not be leaked during the communication. To accord with this, we design a new lightweight authentication mechanism in cloud-based loT environment, called LAM-CIoT. By using LAM-CIoT, an authenticated user can access the data of IoT sensors remotely. LAM-CIoT applies efficient "one-way cryptographic hash functions" along with "bitwise XOR operations". In addition, fuzzy extractor mechanism is also employed at the user's end for local biometric verification. LAM-CIoT is methodically analyzed for its security part through the formal security using the broadly-accepted "Real-Or-Random (ROR)" model, formal security verification using the widely-used "Automated Validation of Internet Security Protocols and Applications (AVISPA)" tool as well as the informal security analysis. The performance analysis shows that LAM-CIoT offers better security, and low communication and computation overheads as compared to the closely related authentication schemes. Finally, LAM-CIoT is evaluated using the NS2 network simulator for the measurement of network performance parameters that envisions the impact of LAM-CIoT on the network performance of LAM-CIoT and other schemes.
机译:物联网(IoT)成为互联网的新时代,它由通过互联网连接的多个物理智能对象(即传感设备)组成。物联网具有不同类型的应用程序,例如智能家居,可穿戴设备,智能互联汽车,工业和智能城市。因此,基于物联网的应用程序已成为我们日常生活的重要组成部分。在基于云的物联网环境中,云平台用于存储从物联网传感器访问的数据。这样的环境具有很大的可扩展性,并且支持实时事件处理,这在几种情况下(即基于IoT传感器的监视和监控)非常重要。由于基于云的物联网中的某些应用非常关键,因此在通信过程中不得泄漏物联网传感器收集和发送的信息。为此,我们在基于云的loT环境中设计了一种新的轻量级身份验证机制,称为LAM-CIoT。通过使用LAM-CIoT,经过身份验证的用户可以远程访问IoT传感器的数据。 LAM-CIoT应用有效的“单向加密哈希函数”以及“按位XOR操作”。另外,在用户端还采用模糊提取器机制进行本地生物特征验证。通过使用广泛接受的“实或随机(ROR)”模型的形式安全性,使用广泛使用的“ Internet安全协议和应用程序的自动验证”的形式安全性验证,对LAM-CIoT的安全性部分进行了系统地分析)工具以及非正式的安全分析。性能分析表明,与紧密相关的身份验证方案相比,LAM-CIoT提供了更好的安全性以及较低的通信和计算开销。最后,使用NS2网络模拟器对LAM-CIoT进行评估,以评估网络性能参数,该参数预见了LAM-CIoT对LAM-CIoT和其他方案的网络性能的影响。

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