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Deepak Gopinath
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2020 – today
- 2023
- [j5]Jonas Gehring, Deepak Gopinath, Jungdam Won, Andreas Krause, Gabriel Synnaeve, Nicolas Usunier:
Leveraging Demonstrations with Latent Space Priors. Trans. Mach. Learn. Res. 2023 (2023) - [c6]João Pedro Araújo, Jiaman Li, Karthik Vetrivel, Rishi Agarwal, Jiajun Wu, Deepak Gopinath, Alexander Clegg, C. Karen Liu:
CIRCLE: Capture In Rich Contextual Environments. CVPR 2023: 21211-21221 - [c5]Yunbo Zhang, Deepak Gopinath, Yuting Ye, Jessica K. Hodgins, Greg Turk, Jungdam Won:
Simulation and Retargeting of Complex Multi-Character Interactions. SIGGRAPH (Conference Paper Track) 2023: 65:1-65:11 - [i6]João Pedro Araújo, Jiaman Li, Karthik Vetrivel, Rishi Agarwal, Deepak Gopinath, Jiajun Wu, Alexander Clegg, C. Karen Liu:
CIRCLE: Capture In Rich Contextual Environments. CoRR abs/2303.17912 (2023) - [i5]Yunbo Zhang, Deepak Gopinath, Yuting Ye, Jessica K. Hodgins, Greg Turk, Jungdam Won:
Simulation and Retargeting of Complex Multi-Character Interactions. CoRR abs/2305.20041 (2023) - 2022
- [j4]Jungdam Won, Deepak Gopinath, Jessica K. Hodgins:
Physics-based character controllers using conditional VAEs. ACM Trans. Graph. 41(4): 96:1-96:12 (2022) - [c4]Yifeng Jiang, Yuting Ye, Deepak Gopinath, Jungdam Won, Alexander W. Winkler, C. Karen Liu:
Transformer Inertial Poser: Real-time Human Motion Reconstruction from Sparse IMUs with Simultaneous Terrain Generation. SIGGRAPH Asia 2022: 3:1-3:9 - [c3]Deepak Gopinath, Hanbyul Joo, Jungdam Won:
Motion In-betweening for Physically Simulated Characters. SIGGRAPH Asia Posters 2022: 7:1-7:2 - [i4]Yifeng Jiang, Yuting Ye, Deepak Gopinath, Jungdam Won, Alexander W. Winkler, C. Karen Liu:
Transformer Inertial Poser: Attention-based Real-time Human Motion Reconstruction from Sparse IMUs. CoRR abs/2203.15720 (2022) - [i3]Jonas Gehring, Deepak Gopinath, Jungdam Won, Andreas Krause, Gabriel Synnaeve, Nicolas Usunier:
Leveraging Demonstrations with Latent Space Priors. CoRR abs/2210.14685 (2022) - 2021
- [j3]Jungdam Won, Deepak Gopinath, Jessica K. Hodgins:
Control strategies for physically simulated characters performing two-player competitive sports. ACM Trans. Graph. 40(4): 146:1-146:11 (2021) - 2020
- [j2]Jungdam Won, Deepak Gopinath, Jessica K. Hodgins:
A scalable approach to control diverse behaviors for physically simulated characters. ACM Trans. Graph. 39(4): 33 (2020)
2010 – 2019
- 2019
- [c2]Juan Pino, Liezl Puzon, Jiatao Gu, Xutai Ma, Arya D. McCarthy, Deepak Gopinath:
Harnessing Indirect Training Data for End-to-End Automatic Speech Translation: Tricks of the Trade. IWSLT 2019 - [i2]Juan Miguel Pino, Liezl Puzon, Jiatao Gu, Xutai Ma, Arya D. McCarthy, Deepak Gopinath:
Leveraging Out-of-Task Data for End-to-End Automatic Speech Translation. CoRR abs/1909.06515 (2019) - 2016
- [j1]Deepak Gopinath, Gil Weinberg:
A generative physical model approach for enhancing the stroke palette for robotic drummers. Robotics Auton. Syst. 86: 207-215 (2016) - [c1]Behnaz Nojavanasghari, Deepak Gopinath, Jayanth Koushik, Tadas Baltrusaitis, Louis-Philippe Morency:
Deep multimodal fusion for persuasiveness prediction. ICMI 2016: 284-288 - [i1]Mason Bretan, Deepak Gopinath, Philip Mullins, Gil Weinberg:
A Robotic Prosthesis for an Amputee Drummer. CoRR abs/1612.04391 (2016)
Coauthor Index
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