Hardware Implementation of Secure Lightweight Cryptographic Designs for IoT Applications

Author:

El Hadj Youssef Wajih1ORCID,Abdelli Ali1ORCID,Dridi Fethi1ORCID,Machhout Mohsen1ORCID

Affiliation:

1. Faculty of Sciences of Monastir, Electronics and Micro-Electronic Laboratory (LEME), Monastir 5000, Tunisia

Abstract

The recent expansion of the Internet of Things is creating a new world of smart devices in which security implications are very significant. Besides the claimed security level, the IoT devices are usually featured with constrained resources, such as low computation capability, low memory, and limited battery. Lightweight cryptographic primitives are proposed in the context of IoT while considering the trade-off between security guarantee and good performance. In this paper, we present optimized hardware, lightweight cryptographic designs, of 32-bit datapath, LED 64/128, SIMON 64/128, and SIMECK 64/128 algorithms, for constrained devices. Our proposed designs are investigated on Spartan-3, Spartan-6, and Zynq-7000 FPGA platforms in terms of area, speed, efficiency, and power consumption. The proposed designs achieved a high throughput up to 891.99 Mbps, 838.95 Mbps, and 210.13 Mbps for SIMECK 64/128, SIMON 64/128, and LED 64/128 on Zynq-7000, respectively. A deep comparison between our three proposed designs is elaborated on different FPGA families for adequate FPGAs-based application deployment. Test results and security analysis show that not only can our proposed designs achieve good encryption results with high performance and a low reduced cost but also they are secure enough to resist statistical attacks.

Publisher

Hindawi Limited

Subject

Computer Networks and Communications,Information Systems

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1. Secure and Fast Remote Application–Based Authentication Dragonfly Using an LED Algorithm in Smart Buildings;2024 International Conference on Artificial Intelligence in Information and Communication (ICAIIC);2024-02-19

2. Hardware Implementation of SP-N and FN for Lightweight Algorithms in IoT Devices;2024 2nd International Conference on Unmanned Vehicle Systems-Oman (UVS);2024-02-12

3. Hardware Implementation of Shadow Lightweight Block Cipher for Resource-Constrained IoT Devices;2024 Third International Conference on Power, Control and Computing Technologies (ICPC2T);2024-01-18

4. A lightweight and robust block cipher algorithm for real-time applications;Signal, Image and Video Processing;2023-11-26

5. Co-Design of SIMON Lightweight Block Cipher Algorithm on an FPGA;2023 IEEE International Conference on Artificial Intelligence & Green Energy (ICAIGE);2023-10-12

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