2013Unpublished venueRequires access

Low power and high speed AES using mix column transformation

J. Balamurugan, E. Logashanmugam

Open publisher page 8 citations

Abstract

It is crucial to design energy-efficient advanced encryption standard (AES) cryptography for low power embedded systems powered by limited battery. We will present the hardware architecture to implement low power AES crypto module. Our low power AES crypto module has optimized architecture of data encryption unit and key schedule unit which could be applicable to wireless sensor networks. We also details low power design methods used to design our low power AES crypto module. The power consumption and area is further decreased by inserting compact and flexible architecture for mix column transform. The proposed AES algorithm achieves a high speed and low area when compared with the existing methods.

About this research paper

What this paper is about

It is crucial to design energy-efficient advanced encryption standard (AES) cryptography for low power embedded systems powered by limited battery. We will present the hardware architecture to implement low power AES crypto module. Our low power AES crypto module has optimized architecture of data encryption unit and key schedule unit which could be applicable to wireless sensor networks. We also details low power design methods used to design our low power AES crypto module. The power consumption and area is further decreased by inserting compact and flexible architecture for mix column transform. The proposed AES algorithm achieves a high speed and low area when compared with the existing methods.

Why it matters

OpenAlex reports 8 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

It is crucial to design energy-efficient advanced encryption standard (AES) cryptography for low power embedded systems powered by limited battery. We will present the hardware architecture to implement low power AES crypto module. Our low power AES crypto module has optimized architecture of data encryption unit and key schedule unit which could be applicable to wireless sensor networks. We also details low power design methods used to design our low power AES crypto module. The power consumption and area is further decreased by inserting compact and flexible architecture for mix column transform. The proposed AES algorithm achieves a high speed and low area when compared with the existing methods.

Key concepts: Advanced Encryption Standard, Embedded system, Computer science, Cryptography, Power analysis, Encryption, Schedule, Power (physics)

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