| 2026 | VR | CHOP: Breaking Anonymity in XR through a Novel and Cost-effective Chain of Privacy Attacks and Differential Privacy-Based Defenses. | Ripan Kumar Kundu, Brendan David-John, Khaza Anuarul Hoque |
| 2025 | ISMAR | Adversarial VR: An Open-Source Testbed for Evaluating Adversarial Robustness of VR Cybersickness Detection and Mitigation. | Istiak Ahmed, Ripan Kumar Kundu, Khaza Anuarul Hoque |
| 2025 | ISMAR | PrivateXR: Defending Privacy Attacks in Extended Reality Through Explainable AI-Guided Differential Privacy. | Ripan Kumar Kundu, Istiak Ahmed, Khaza Anuarul Hoque |
| 2025 | ISMAR | PILAR: Personalizing Augmented Reality Interactions with LLM-based Human-Centric and Trustworthy Explanations for Daily Use Cases. | Ripan Kumar Kundu, Istiak Ahmed, Khaza Anuarul Hoque |
| 2025 | ISMAR | ExciteVR: Effective Cybersickness Mitigation in Virtual Reality using Explainable Artificial Intelligence and Large Language Models. | Ripan Kumar Kundu, Istiak Ahmed, John Quarles, Khaza Anuarul Hoque |
| 2025 | VR | Advancing Cybersickness Prediction in Immersive Virtual Reality Using Pre-Trained Large Foundation Models. | Ripan Kumar Kundu, Khaza Anuarul Hoque |
| 2025 | VR | SecretVR: Differential Privacy Defense Against Membership Inference Privacy Attacks in Virtual Reality. | Ripan Kumar Kundu, Khaza Anuarul Hoque |
| 2025 | VRST | Enhancing Immersive Virtual Reality Experiences with Multiple Tasks Prediction Using Pre-Trained Large Foundation Models. | Ripan Kumar Kundu, Istiak Ahmed, Khaza Anuarul Hoque |
| 2024 | ISMAR | Preserving Personal Space: Differentially Private Cybersickness Detection in Immersive Virtual Reality Environments. | Ripan Kumar Kundu, Khaza Anuarul Hoque |
| 2024 | ISMAR | Mazed and Confused: A Dataset of Cybersickness, Working Memory, Mental Load, Physical Load, and Attention During a Real Walking Task in VR. | Jyotirmay Nag Setu, Joshua M. Le, Ripan Kumar Kundu, Barry Giesbrecht, Tobias Hllerer, Khaza Anuarul Hoque, Kevin Desai, John Quarles |
| 2023 | IUI | VR-LENS: Super Learning-based Cybersickness Detection and Explainable AI-Guided Deployment in Virtual Reality. | Ripan Kumar Kundu, Osama Yahia Elsaid, Prasad Calyam, Khaza Anuarul Hoque |
| 2023 | VR | LiteVR: Interpretable and Lightweight Cybersickness Detection using Explainable AI. | Ripan Kumar Kundu, Rifatul Islam, John Quarles, Khaza Anuarul Hoque |
| 2022 | ISMAR | TruVR: Trustworthy Cybersickness Detection using Explainable Machine Learning. | Ripan Kumar Kundu, Rifatul Islam, Prasad Calyam, Khaza Anuarul Hoque |