Alert button
Picture for Mikhail Pavlov

Mikhail Pavlov

Alert button

Evaluating Large Language Models Trained on Code

Add code
Bookmark button
Alert button
Jul 14, 2021
Mark Chen, Jerry Tworek, Heewoo Jun, Qiming Yuan, Henrique Ponde de Oliveira Pinto, Jared Kaplan, Harri Edwards, Yuri Burda, Nicholas Joseph, Greg Brockman, Alex Ray, Raul Puri, Gretchen Krueger, Michael Petrov, Heidy Khlaaf, Girish Sastry, Pamela Mishkin, Brooke Chan, Scott Gray, Nick Ryder, Mikhail Pavlov, Alethea Power, Lukasz Kaiser, Mohammad Bavarian, Clemens Winter, Philippe Tillet, Felipe Petroski Such, Dave Cummings, Matthias Plappert, Fotios Chantzis, Elizabeth Barnes, Ariel Herbert-Voss, William Hebgen Guss, Alex Nichol, Alex Paino, Nikolas Tezak, Jie Tang, Igor Babuschkin, Suchir Balaji, Shantanu Jain, William Saunders, Christopher Hesse, Andrew N. Carr, Jan Leike, Josh Achiam, Vedant Misra, Evan Morikawa, Alec Radford, Matthew Knight, Miles Brundage, Mira Murati, Katie Mayer, Peter Welinder, Bob McGrew, Dario Amodei, Sam McCandlish, Ilya Sutskever, Wojciech Zaremba

Figure 1 for Evaluating Large Language Models Trained on Code
Figure 2 for Evaluating Large Language Models Trained on Code
Figure 3 for Evaluating Large Language Models Trained on Code
Figure 4 for Evaluating Large Language Models Trained on Code
Viaarxiv icon

Zero-Shot Text-to-Image Generation

Add code
Bookmark button
Alert button
Feb 26, 2021
Aditya Ramesh, Mikhail Pavlov, Gabriel Goh, Scott Gray, Chelsea Voss, Alec Radford, Mark Chen, Ilya Sutskever

Figure 1 for Zero-Shot Text-to-Image Generation
Figure 2 for Zero-Shot Text-to-Image Generation
Figure 3 for Zero-Shot Text-to-Image Generation
Figure 4 for Zero-Shot Text-to-Image Generation
Viaarxiv icon

Learning to Run challenge solutions: Adapting reinforcement learning methods for neuromusculoskeletal environments

Add code
Bookmark button
Alert button
Apr 02, 2018
Łukasz Kidziński, Sharada Prasanna Mohanty, Carmichael Ong, Zhewei Huang, Shuchang Zhou, Anton Pechenko, Adam Stelmaszczyk, Piotr Jarosik, Mikhail Pavlov, Sergey Kolesnikov, Sergey Plis, Zhibo Chen, Zhizheng Zhang, Jiale Chen, Jun Shi, Zhuobin Zheng, Chun Yuan, Zhihui Lin, Henryk Michalewski, Piotr Miłoś, Błażej Osiński, Andrew Melnik, Malte Schilling, Helge Ritter, Sean Carroll, Jennifer Hicks, Sergey Levine, Marcel Salathé, Scott Delp

Figure 1 for Learning to Run challenge solutions: Adapting reinforcement learning methods for neuromusculoskeletal environments
Figure 2 for Learning to Run challenge solutions: Adapting reinforcement learning methods for neuromusculoskeletal environments
Figure 3 for Learning to Run challenge solutions: Adapting reinforcement learning methods for neuromusculoskeletal environments
Figure 4 for Learning to Run challenge solutions: Adapting reinforcement learning methods for neuromusculoskeletal environments
Viaarxiv icon

Run, skeleton, run: skeletal model in a physics-based simulation

Add code
Bookmark button
Alert button
Jan 28, 2018
Mikhail Pavlov, Sergey Kolesnikov, Sergey M. Plis

Figure 1 for Run, skeleton, run: skeletal model in a physics-based simulation
Figure 2 for Run, skeleton, run: skeletal model in a physics-based simulation
Figure 3 for Run, skeleton, run: skeletal model in a physics-based simulation
Figure 4 for Run, skeleton, run: skeletal model in a physics-based simulation
Viaarxiv icon

Deep Attention Recurrent Q-Network

Add code
Bookmark button
Alert button
Dec 05, 2015
Ivan Sorokin, Alexey Seleznev, Mikhail Pavlov, Aleksandr Fedorov, Anastasiia Ignateva

Figure 1 for Deep Attention Recurrent Q-Network
Figure 2 for Deep Attention Recurrent Q-Network
Figure 3 for Deep Attention Recurrent Q-Network
Figure 4 for Deep Attention Recurrent Q-Network
Viaarxiv icon