Security Analysis of SAT_Jo Lightweight Block Cipher for Data Security in Healthcare IoT
Autor: | L. Arockiam, R. Shantha Mary Joshitta, P. D. Sheba Kezia Malarchelvi |
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Rok vydání: | 2019 |
Předmět: |
Security analysis
business.industry Computer science 05 social sciences Data security Cryptography 02 engineering and technology Encryption Computer security computer.software_genre 0502 economics and business 0202 electrical engineering electronic engineering information engineering Key (cryptography) Overhead (computing) 020201 artificial intelligence & image processing business computer 050203 business & management Block cipher Block (data storage) |
Zdroj: | ICCBDC |
DOI: | 10.1145/3358505.3358527 |
Popis: | In this fast moving world, every industry is advanced by a new technological paradigm called Internet of Things (IoT). It offers interconnectivity between the digital and the real world which will swiftly transform the style of doing business. It opens up a wide-ranging new array of dynamic opportunities in all industries and is fuelling innovation in every part of life. Due to the constrained nature of the devices in IoT environment, it is difficult to execute complex data encryption algorithms to enhance the security. Moreover, computation overhead caused by the existing cryptographic security algorithms is heavy and has to be minimized. To overcome these challenges, this paper presents the security analysis of the lightweight block cipher SAT_Jo to ensure the data security in healthcare Internet of Things. It is based on SPN structure and runs for 31 rounds. It encrypts 64-bits of block length with key of 80 bits. Cadence NC-Verilog 5.1 is used for simulation and Cadence Encounter RTL Compiler v10.1 for synthesis. The implementations are synthesized for UMC 90 nm low-leakage Faraday library from technology libraries. Moreover, the proposed SAT_Jo block cipher withstands in various attacks such as differential attack, linear attack and algebraic attack in healthcare IoT environment. |
Databáze: | OpenAIRE |
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