Alert button
Picture for Siddhartha Srinivasa

Siddhartha Srinivasa

Alert button

Multi-Sample Long Range Path Planning under Sensing Uncertainty for Off-Road Autonomous Driving

Add code
Bookmark button
Alert button
Mar 17, 2024
Matt Schmittle, Rohan Baijal, Brian Hou, Siddhartha Srinivasa, Byron Boots

Figure 1 for Multi-Sample Long Range Path Planning under Sensing Uncertainty for Off-Road Autonomous Driving
Figure 2 for Multi-Sample Long Range Path Planning under Sensing Uncertainty for Off-Road Autonomous Driving
Figure 3 for Multi-Sample Long Range Path Planning under Sensing Uncertainty for Off-Road Autonomous Driving
Figure 4 for Multi-Sample Long Range Path Planning under Sensing Uncertainty for Off-Road Autonomous Driving
Viaarxiv icon

An Adaptable, Safe, and Portable Robot-Assisted Feeding System

Add code
Bookmark button
Alert button
Mar 07, 2024
Ethan Kroll Gordon, Rajat Kumar Jenamani, Amal Nanavati, Ziang Liu, Haya Bolotski, Raida Karim, Daniel Stabile, Atharva Kashyap, Bernie Hao Zhu, Xilai Dai, Tyler Schrenk, Jonathan Ko, Taylor Kessler Faulkner, Tapomayukh Bhattacharjee, Siddhartha Srinivasa

Figure 1 for An Adaptable, Safe, and Portable Robot-Assisted Feeding System
Figure 2 for An Adaptable, Safe, and Portable Robot-Assisted Feeding System
Figure 3 for An Adaptable, Safe, and Portable Robot-Assisted Feeding System
Viaarxiv icon

CCIL: Continuity-based Data Augmentation for Corrective Imitation Learning

Add code
Bookmark button
Alert button
Oct 19, 2023
Liyiming Ke, Yunchu Zhang, Abhay Deshpande, Siddhartha Srinivasa, Abhishek Gupta

Viaarxiv icon

NEWTON: Are Large Language Models Capable of Physical Reasoning?

Add code
Bookmark button
Alert button
Oct 10, 2023
Yi Ru Wang, Jiafei Duan, Dieter Fox, Siddhartha Srinivasa

Figure 1 for NEWTON: Are Large Language Models Capable of Physical Reasoning?
Figure 2 for NEWTON: Are Large Language Models Capable of Physical Reasoning?
Figure 3 for NEWTON: Are Large Language Models Capable of Physical Reasoning?
Figure 4 for NEWTON: Are Large Language Models Capable of Physical Reasoning?
Viaarxiv icon

Cherry-Picking with Reinforcement Learning

Add code
Bookmark button
Alert button
Mar 09, 2023
Yunchu Zhang, Liyiming Ke, Abhay Deshpande, Abhishek Gupta, Siddhartha Srinivasa

Figure 1 for Cherry-Picking with Reinforcement Learning
Figure 2 for Cherry-Picking with Reinforcement Learning
Figure 3 for Cherry-Picking with Reinforcement Learning
Figure 4 for Cherry-Picking with Reinforcement Learning
Viaarxiv icon

Lazy Incremental Search for Efficient Replanning with Bounded Suboptimality Guarantees

Add code
Bookmark button
Alert button
Oct 23, 2022
Jaein Lim, Mahdi Ghanei, R. Connor Lawson, Siddhartha Srinivasa, Panagiotis Tsiotras

Figure 1 for Lazy Incremental Search for Efficient Replanning with Bounded Suboptimality Guarantees
Figure 2 for Lazy Incremental Search for Efficient Replanning with Bounded Suboptimality Guarantees
Figure 3 for Lazy Incremental Search for Efficient Replanning with Bounded Suboptimality Guarantees
Figure 4 for Lazy Incremental Search for Efficient Replanning with Bounded Suboptimality Guarantees
Viaarxiv icon

Real World Offline Reinforcement Learning with Realistic Data Source

Add code
Bookmark button
Alert button
Oct 12, 2022
Gaoyue Zhou, Liyiming Ke, Siddhartha Srinivasa, Abhinav Gupta, Aravind Rajeswaran, Vikash Kumar

Figure 1 for Real World Offline Reinforcement Learning with Realistic Data Source
Figure 2 for Real World Offline Reinforcement Learning with Realistic Data Source
Figure 3 for Real World Offline Reinforcement Learning with Realistic Data Source
Figure 4 for Real World Offline Reinforcement Learning with Realistic Data Source
Viaarxiv icon

Git Re-Basin: Merging Models modulo Permutation Symmetries

Add code
Bookmark button
Alert button
Sep 11, 2022
Samuel K. Ainsworth, Jonathan Hayase, Siddhartha Srinivasa

Figure 1 for Git Re-Basin: Merging Models modulo Permutation Symmetries
Figure 2 for Git Re-Basin: Merging Models modulo Permutation Symmetries
Figure 3 for Git Re-Basin: Merging Models modulo Permutation Symmetries
Figure 4 for Git Re-Basin: Merging Models modulo Permutation Symmetries
Viaarxiv icon

Iterative Linear Quadratic Optimization for Nonlinear Control: Differentiable Programming Algorithmic Templates

Add code
Bookmark button
Alert button
Jul 13, 2022
Vincent Roulet, Siddhartha Srinivasa, Maryam Fazel, Zaid Harchaoui

Figure 1 for Iterative Linear Quadratic Optimization for Nonlinear Control: Differentiable Programming Algorithmic Templates
Figure 2 for Iterative Linear Quadratic Optimization for Nonlinear Control: Differentiable Programming Algorithmic Templates
Figure 3 for Iterative Linear Quadratic Optimization for Nonlinear Control: Differentiable Programming Algorithmic Templates
Figure 4 for Iterative Linear Quadratic Optimization for Nonlinear Control: Differentiable Programming Algorithmic Templates
Viaarxiv icon

Electrostatic Brakes Enable Individual Joint Control of Underactuated, Highly Articulated Robots

Add code
Bookmark button
Alert button
Apr 05, 2022
Patrick Lancaster, Christoforos Mavrogiannis, Siddhartha Srinivasa, Joshua Smith

Figure 1 for Electrostatic Brakes Enable Individual Joint Control of Underactuated, Highly Articulated Robots
Figure 2 for Electrostatic Brakes Enable Individual Joint Control of Underactuated, Highly Articulated Robots
Figure 3 for Electrostatic Brakes Enable Individual Joint Control of Underactuated, Highly Articulated Robots
Figure 4 for Electrostatic Brakes Enable Individual Joint Control of Underactuated, Highly Articulated Robots
Viaarxiv icon