Growing community of inventors

San Francisco, CA, United States of America

Adrian Li

Average Co-Inventor Count = 3.77

ph-index = 4

The patent ph-index is calculated by counting the number of publications for which an author has been cited by other authors at least that same number of times.

Forward Citations = 48

Adrian LiMrinal Kalakrishnan (11 patents)Adrian LiPeter Pastor Sampedro (7 patents)Adrian LiVincent Louis Dureau (5 patents)Adrian LiKurt Konolige (5 patents)Adrian LiAli Yahya Valdovinos (4 patents)Adrian LiAaron Ladd Edsinger (2 patents)Adrian LiBenjamin Holson (2 patents)Adrian LiNicolas Hudson (2 patents)Adrian LiAlexander Herzog (2 patents)Adrian LiKarol Hausman (1 patent)Adrian LiMengyuan Yan (1 patent)Adrian LiAli Yahya Valdovinoa (1 patent)Adrian LiCristian Bodnar (1 patent)Adrian LiAdrian Li (13 patents)Mrinal KalakrishnanMrinal Kalakrishnan (30 patents)Peter Pastor SampedroPeter Pastor Sampedro (15 patents)Vincent Louis DureauVincent Louis Dureau (97 patents)Kurt KonoligeKurt Konolige (50 patents)Ali Yahya ValdovinosAli Yahya Valdovinos (4 patents)Aaron Ladd EdsingerAaron Ladd Edsinger (36 patents)Benjamin HolsonBenjamin Holson (23 patents)Nicolas HudsonNicolas Hudson (18 patents)Alexander HerzogAlexander Herzog (5 patents)Karol HausmanKarol Hausman (2 patents)Mengyuan YanMengyuan Yan (1 patent)Ali Yahya ValdovinoaAli Yahya Valdovinoa (1 patent)Cristian BodnarCristian Bodnar (1 patent)
..
Inventor’s number of patents
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Strength of working relationships

Company Filing History:

1. X Development LLC (11 from 1,198 patents)

2. Google Inc. (2 from 32,622 patents)


13 patents:

1. 12210943 - Training a policy model for a robotic task, using reinforcement learning and utilizing data that is based on episodes, of the robotic task, guided by an engineered policy

2. 12049004 - Operating multiple testing robots based on robot instructions and/or environmental parameters received in a request

3. 11615291 - Neural network modules

4. 11610153 - Generating reinforcement learning data that is compatible with reinforcement learning for a robotic task

5. 11571809 - Robotic control using value distributions

6. 11565401 - Operating multiple testing robots based on robot instructions and/or environmental parameters received in a request

7. 11325252 - Action prediction networks for robotic grasping

8. 10981270 - Operating multiple testing robots based on robot instructions and/or environmental parameters received in a request

9. 10853646 - Generating and utilizing spatial affordances for an object in robotics applications

10. 10748057 - Neural network modules

11. 10427296 - Operating multiple testing robots based on robot instructions and/or environmental parameters received in a request

12. 10354139 - Generating and utilizing spatial affordances for an object in robotics applications

13. 10058995 - Operating multiple testing robots based on robot instructions and/or environmental parameters received in a request

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