Embedded LUKS (E-LUKS): A Hardware Solution to IoT Security

Author:

Cano-Quiveu GermanORCID,Ruiz-de-clavijo-Vazquez Paulino,Bellido Manuel J.,Juan-Chico JorgeORCID,Viejo-Cortes JulianORCID,Guerrero-Martos David,Ostua-Aranguena EnriqueORCID

Abstract

The Internet of Things (IoT) security is one of the most important issues developers have to face. Data tampering must be prevented in IoT devices and some or all of the confidentiality, integrity, and authenticity of sensible data files must be assured in most practical IoT applications, especially when data are stored in removable devices such as microSD cards, which is very common. Software solutions are usually applied, but their effectiveness is limited due to the reduced resources available in IoT systems. This paper introduces a hardware-based security framework for IoT devices (Embedded LUKS) similar to the Linux Unified Key Setup (LUKS) solution used in Linux systems to encrypt data partitions. Embedded LUKS (E-LUKS) extends the LUKS capabilities by adding integrity and authentication methods, in addition to the confidentiality already provided by LUKS. E-LUKS uses state-of-the-art encryption and hash algorithms such as PRESENT and SPONGENT. Both are recognized as adequate solutions for IoT devices being PRESENT incorporated in the ISO/IEC 29192-2:2019 for lightweight block ciphers. E-LUKS has been implemented in modern XC7Z020 FPGA chips, resulting in a smaller hardware footprint compared to previous LUKS hardware implementations, a footprint of about a 10% of these LUKS implementations, making E-LUKS a great alternative to provide Full Disk Encryption (FDE) alongside authentication to a wide range of IoT devices.

Funder

Ministerio de Industria y Competitividad of Spain

University of Seville

European Regional Development Fund

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Hardware and Architecture,Signal Processing,Control and Systems Engineering

Reference45 articles.

1. Global Smart Shade Devices Market 2020–2024|Emergence of IOT and AI-Based Smart Shade Devices to Boost Market Growth|Technavio|Business Wirehttps://www.businesswire.com/news/home/20200131005322/en/Global-Smart-Shade-Devices-Market-2020-2024-Emergence

2. Roaming Data Traffic Generated by Consumer & IoT Devices Forecast to Reach 2000 Petabytes in 2024: Kaleido Intelligence|Business Wirehttps://www.businesswire.com/news/home/20200203005036/en/Roaming-Data-Traffic-Generated-Consumer-IoT-Devices

3. Using Smart Edge IoT Devices for Safer, Rapid Response With Industry IoT Control Operations

4. IoT Medical Devices Market Growth Holds Strong; Key Players studied Medtronic, GE Healthcare, Philips Healthcare (Philips), Siemens—MarketWatchhttps://www.marketwatch.com/press-release/iot-medical-devices-market-growth-holds-strong-key-players-studied-medtronic-ge-healthcare-philips-healthcare-philips-siemens-2020-01-30

5. Multisensor Data Fusion Calibration in IoT Air Pollution Platforms

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