White-Box Cryptography Based Data Encryption-Decryption Scheme for IoT Environment
Title | White-Box Cryptography Based Data Encryption-Decryption Scheme for IoT Environment |
Publication Type | Conference Paper |
Year of Publication | 2019 |
Authors | Saha, Arunima, Srinivasan, Chungath |
Conference Name | 2019 5th International Conference on Advanced Computing Communication Systems (ICACCS) |
Publisher | IEEE |
ISBN Number | 978-1-5386-9533-3 |
Keywords | advanced encryption standard, Block Cipher, CBC mode., cipher block chaining mode, Ciphers, code lifting attacks, composability, computer network security, cryptography, differential attacks, encoding, Encryption, implanted devices, infusion pumps, Internet of Things, IoT devices, IoT environment, manufacturing process, Matrix decomposition, Medical Devices, Metrics, pedestrian levels, pubcrawl, resilience, Resiliency, resource constrained environments, symmetric encryptions algorithms, transportation monitoring, white box cryptography, White Box Security, white-box cryptography, white-box cryptography based data encryption-decryption scheme |
Abstract | The economic progress of the Internet of Things (IoT) is phenomenal. Applications range from checking the alignment of some components during a manufacturing process, monitoring of transportation and pedestrian levels to enhance driving and walking path, remotely observing terminally ill patients by means of medical devices such as implanted devices and infusion pumps, and so on. To provide security, encrypting the data becomes an indispensable requirement, and symmetric encryptions algorithms are becoming a crucial implementation in the resource constrained environments. Typical symmetric encryption algorithms like Advanced Encryption Standard (AES) showcases an assumption that end points of communications are secured and that the encryption key being securely stored. However, devices might be physically unprotected, and attackers may have access to the memory while the data is still encrypted. It is essential to reserve the key in such a way that an attacker finds it hard to extract it. At present, techniques like White-Box cryptography has been utilized in these circumstances. But it has been reported that applying White-Box cryptography in IoT devices have resulted in other security issues like the adversary having access to the intermediate values, and the practical implementations leading to Code lifting attacks and differential attacks. In this paper, a solution is presented to overcome these problems by demonstrating the need of White-Box Cryptography to enhance the security by utilizing the cipher block chaining (CBC) mode. |
URL | https://ieeexplore.ieee.org/document/8728331 |
DOI | 10.1109/ICACCS.2019.8728331 |
Citation Key | saha_white-box_2019 |
- IoT environment
- white-box cryptography based data encryption-decryption scheme
- white-box cryptography
- White Box Security
- white box cryptography
- transportation monitoring
- symmetric encryptions algorithms
- resource constrained environments
- Resiliency
- resilience
- pubcrawl
- pedestrian levels
- Metrics
- medical devices
- Matrix decomposition
- manufacturing process
- advanced encryption standard
- IoT devices
- Internet of Things
- infusion pumps
- implanted devices
- encryption
- encoding
- differential attacks
- Cryptography
- computer network security
- composability
- code lifting attacks
- Ciphers
- cipher block chaining mode
- CBC mode.
- Block Cipher