Abstract
The article provides a thorough exploration of strategies to enhance the security and robustness of Virtual Reality (VR) systems. It starts by dissecting the current hardware architecture, pinpointing potential vulnerabilities, and suggesting improvements. The discussion extends to the use of cutting-edge encryption techniques, emphasizing their role in securing data transfer within VR systems and preventing unauthorized access. Furthermore, the article delves into the development of sturdy firmware and operating systems, underscoring their significance in maintaining the system's resilience against cyber threats and operational disruptions. It also describes the importance of conducting comprehensive stress testing and vulnerability assessments, enabling developers to identify and rectify security loopholes and enhance system robustness. The narrative progresses to the implementation of hardware redundancy and fault tolerance, illustrating how these practices can ensure uninterrupted system operation, even when certain components fail. Lastly, the piece tackles the critical aspect of user privacy within VR/XR environments, offering insights into the unique challenges and proposing strategies to protect users' personal data. Overall, the article presents a holistic approach to fortifying VR systems, integrating various security measures to safeguard against threats, ensuring the reliability of the system, and enhancing the user experience in virtual realms.
| Original language | English |
|---|---|
| Pages (from-to) | 285-304 |
| Number of pages | 20 |
| Journal | CEUR Workshop Proceedings |
| Volume | 3675 |
| Publication status | Published - 2024 |
| Event | 5th International Workshop on Intelligent Information Technologies and Systems of Information Security, IntelITSIS 2024 - Khmelnytskyi, Ukraine Duration: 28 Mar 2024 → … |
Keywords
- Advanced Encryption
- Firmware Development
- Security Enhancement
- User Privacy Protection
- Virtual Reality
ASJC Scopus subject areas
- General Computer Science
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