Memory Efficient High-Performance Rotational Image Encryption
Title | Memory Efficient High-Performance Rotational Image Encryption |
Publication Type | Conference Paper |
Year of Publication | 2019 |
Authors | M, Raviraja Holla, D, Suma |
Conference Name | 2019 International Conference on Communication and Electronics Systems (ICCES) |
Keywords | coalesce, composability, compute unified device architecture, Conferences, cryptography, CUDA, Cyber-physical systems, efficient encryption, Encryption, GPU, graphics processing units, high-performance, high-performance device, high-performance reformulations, image processing, improved global memory utilization, Instruction sets, memory efficient high-performance rotational image encryption, optimisation, Optimization, optimizations, parallel architectures, parallel rotational encryption technique, pubcrawl, Random access memory, real-time applications, Real-time Systems, resilience, Resiliency, rotated encrypted images, rotational image encryption technique, shadow image, storage management, visual cryptography |
Abstract | Image encryption is an essential part of a Visual Cryptography. Existing traditional sequential encryption techniques are infeasible to real-time applications. High-performance reformulations of such methods are increasingly growing over the last decade. These reformulations proved better performances over their sequential counterparts. A rotational encryption scheme encrypts the images in such a way that the decryption is possible with the rotated encrypted images. A parallel rotational encryption technique makes use of a high-performance device. But it less-leverages the optimizations offered by them. We propose a rotational image encryption technique which makes use of memory coalescing provided by the Compute Unified Device Architecture (CUDA). The proposed scheme achieves improved global memory utilization and increased efficiency. |
DOI | 10.1109/ICCES45898.2019.9002173 |
Citation Key | m_memory_2019 |
- real-time systems
- optimisation
- optimization
- optimizations
- parallel architectures
- parallel rotational encryption technique
- pubcrawl
- Random access memory
- real-time applications
- memory efficient high-performance rotational image encryption
- resilience
- Resiliency
- rotated encrypted images
- rotational image encryption technique
- shadow image
- storage management
- visual cryptography
- gpu
- composability
- compute unified device architecture
- Conferences
- Cryptography
- CUDA
- cyber-physical systems
- efficient encryption
- encryption
- coalesce
- graphics processing units
- high-performance
- high-performance device
- high-performance reformulations
- Image Processing
- improved global memory utilization
- Instruction sets