改进的高级加密标准与隐私数据库结构的物联网节点

J. H. Anajemba, C. Iwendi, Mohit Mittal, Tang Yue
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引用次数: 23

摘要

物联网(IoT)包含大量的设备和对象,这些设备和对象具有非常低或不存在的处理和通信资源,连接到未来5G网络中设想的少量高性能设备。在可预见的未来,由于物联网设备的数量庞大,后端系统将无法通过加密原语提供安全性和隐私性。本文提出了一种基于改进的高级加密标准(I-AES)和隐私数据库结构(PDS)的Mesh网络的云近似最近邻(CANN)机制。此外,考虑到5G设备的庞大数量和物联网中适用的物理不可克隆功能(PUF),为即将到来的5G网络提供理论基础。将我们提出的I-AES算法与高级加密标准(AES)和数据加密标准(DES)进行比较,可以发现我们的算法在加密执行时间和吞吐量方面优于先前存在的算法。最后,研究发现,采用保护隐私的数据库结构和改进的具有良好扩展行为的AES算法,加密速度较慢。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improved Advance Encryption Standard with a Privacy Database Structure for IoT Nodes
The Internet of Things (IoT) contains huge number of devices and objects that have very low or nonexistent processing and communication resources, connected to a small number of high-powered devices as envisaged in the coming 5G Networks. In the foreseeable future, the backend systems will not be able to provide security and privacy via cryptographic primitives due to the sheer number of IoT devices. This research presents cloud approximate nearest neighbors (CANN) mechanism of a Mesh network based on an improved advanced encryption standard (I-AES) with a privacy database structure (PDS). In addition, it provides a theoretical basis considering the huge number of 5G devices and physical unclonable functions (PUF) applicable in IoT for the coming 5G Network. Comparing our proposed I-AES algorithm against the advanced encryption standard (AES) and the Data Encryption Standard (DES), it is observed that our algorithm outperforms the previously existing algorithms in terms of encryption execution time and throughput. Finally, it was discovered that the time of encryption was slower using privacy-preserving database structures and improved AES algorithms with good scaling behavior.
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