A mathematical model for secure Cloud-IoT communication: Introducing the revolutionary lightweight key mechanism

Gaikwad Vidya Shrimant, K. Ravindranath, Gudapati Syam Prasad
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Abstract

Internet of Things (IoT) is a new technology in telecommunications that focuses on wireless, remote communication. It involves connecting various smart devices to build a network that can transfer data through the cloud. In this type of environment, challenges such as device life span of battery, space needed for storage, consumption of power, and data security for cloud IoT have been identified. This work presents the design and implementation of a secure lightweight key establishment system for the integration of IoT Cloud. A Symmetric Lightweight Algorithm is utilized to enhance the security of Cloud IoT. To improve the efficiency of key setup time, the Advanced Encryption Standard (AES) is applied. The use of AES algorithm in combination with Cloud and IoT Security ensures efficient and consistent performance across software and hardware platforms in various environments. This integration allows for the connection of various smart devices and sensors to Cloud IoT services, facilitating the sharing of sensor readings while addressing security concerns. Before any data is transferred, we securely authenticate both the cloud server and IoT device and generate unique session keys for each new communication session. We conclude by discussing about how cloud computing helps IoT technology achieve secure connection by overcoming various security challenges.
云-物联网安全通信的数学模型:引入革命性的轻量级密钥机制
物联网(IoT)是电信领域的一项新技术,专注于无线、远程通信。它包括连接各种智能设备来构建一个可以通过云传输数据的网络。在这种类型的环境中,已经确定了诸如电池设备寿命,存储空间所需,功耗和云物联网数据安全性等挑战。本文提出了一种用于物联网云集成的安全轻量级密钥建立系统的设计与实现。采用对称轻量级算法增强云物联网的安全性。为了提高密钥设置的效率,采用了高级加密标准AES (Advanced Encryption Standard)。AES算法与云和物联网安全的结合使用确保了各种环境下跨软件和硬件平台的高效和一致的性能。这种集成允许将各种智能设备和传感器连接到云物联网服务,促进传感器读数的共享,同时解决安全问题。在传输任何数据之前,我们对云服务器和物联网设备进行安全认证,并为每个新的通信会话生成唯一的会话密钥。最后,我们将讨论云计算如何通过克服各种安全挑战来帮助物联网技术实现安全连接。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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