论文标题

使用混乱和基于逻辑地图的密钥生成技术来增强AES,以确保基于物联网的智能家庭

Enhancing AES Using Chaos and Logistic Map-Based Key Generation Technique for Securing IoT-Based Smart Home

论文作者

Rahman, Ziaur, Yi, Xun, Billah, Mustain, Sumi, Mousumi, Anwar, Adnan

论文摘要

物联网(物联网)为人类和机器带来了新的方式,可以通过互联网互相通信。尽管传感器驱动的设备在很大程度上缩短了我们的日常生活,但大多数物联网基础设施都面临着安全挑战。自IoT出现以来,轻质块密码是智能和基于传感器的应用程序的更好选择。当公钥基础架构在全球范围内主导时,对称密钥的代码(例如高级加密标准(AES))显示了与智能家族物联网电器坐在一起的巨大前景。正如所研究的那样,混乱动机的逻辑图显示了确保物联网对齐实时数据通信的巨大潜力。与基于混乱的调度技术同步的Logistic Map的不可预测性和随机性特征可以为构建特定动态密钥传播技术铺平道路,以确保数据机密性,可用性和完整性。在受到AES和混乱密码学的安全前景的激励之后,该论文说明了使用3维S-box(替换框)的关键调度技术。逻辑图算法已合并以增强安全性。所提出的方法适用于轻巧的物联网设备,例如智能家居设备。这项工作决定了在消息传输之前,看起来混乱如何加速所需的键性定位。根据智能家庭传感器设备所需的关键生成延迟评估所提出的模型。

The Internet of Things (IoT) has brought new ways for humans and machines to communicate with each other over the internet. Though sensor-driven devices have largely eased our everyday lives, most IoT infrastructures have been suffering from security challenges. Since the emergence of IoT, lightweight block ciphers have been a better option for intelligent and sensor-based applications. When public-key infrastructure dominates worldwide, the symmetric key encipherment such as Advanced Encryption Standard (AES) shows immense prospects to sit with the smart home IoT appliances. As investigated, chaos motivated logistic map shows enormous potential to secure IoT aligned real-time data communication. The unpredictability and randomness features of the logistic map in sync with chaos-based scheduling techniques can pave the way to build a particular dynamic key propagation technique for data confidentiality, availability and integrity. After being motivated by the security prospects of AES and chaos cryptography, the paper illustrates a key scheduling technique using a 3-dimensional S-box (substitution-box). The logistic map algorithm has been incorporated to enhance security. The proposed approach has applicability for lightweight IoT devices such as smart home appliances. The work determines how seeming chaos accelerates the desired key-initiation before message transmission. The proposed model is evaluated based on the key generation delay required for the smart-home sensor devices.

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