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Vikas Sindhwani

44 accepted papers

2025

Achieving Human Level Competitive Robot Table Tennis

ICRA 2025

Achieving human-level performance on real world tasks is a north star for the robotics community. We present the first learned robot agent that reaches amateur humanlevel performance in competitive table tennis. Table tennis is a physically demanding sport that takes humans years to master. We contr

Cited by 43SourceScholar
2025

Generating Robot Constitutions & Benchmarks for Semantic Safety

CoRL 2025poster

Large vision and language models are being increasingly deployed on real robots, leading to an immediate need for ensuring robot safety under AI-control. In this paper, we develop the ASIMOV Benchmark — a collection of large-scale semantic safety datasets grounded in real-world visual scenes and hum…

Cited by 0SourceScholar
2025

Learning the RoPEs: Better 2D and 3D Position Encodings with STRING

ICML 2025spotlight

We introduce $\textbf{STRING}$: Separable Translationally Invariant Position Encodings. STRING extends Rotary Position Encodings, a recently proposed and widely used algorithm in large language models, via a unifying theoretical framework. Importantly, STRING still provides $\textbf{exact}$ translat…

Cited by 1SourcePDFScholar
2025

Predictive Red Teaming: Breaking Policies Without Breaking Robots

CoRL 2025poster

Visuomotor policies trained via imitation learning are capable of performing challenging manipulation tasks, but are often extremely brittle to lighting, visual distractors, and object locations. These vulnerabilities can depend unpredictably on the specifics of training, and are challenging to expo…

Cited by 0SourceScholar
2024

Embodied AI with Two Arms: Zero-shot Learning, Safety and Modularity

IROS 2024poster

We present an embodied AI system which receives open-ended natural language instructions from a human, and controls two arms to collaboratively accomplish potentially long-horizon tasks over a large workspace. Our system is modular: it deploys state of the art Large Language Models for task planning…

Cited by 15SourceScholar
2024

How to Prompt Your Robot: A PromptBook for Manipulation Skills with Code as Policies

ICRA 2024poster

Large Language Models (LLMs) have demonstrated the ability to perform semantic reasoning, planning and write code for robotics tasks. However, most methods rely on pre-existing primitives (i.e. pick, open drawer) or similar examples of robot code alone, which heavily limits their scalability to new…

Cited by 30SourceScholar
2024

Mobility VLA: Multimodal Instruction Navigation with Long-Context VLMs and Topological Graphs

CoRL 2024poster

An elusive goal in navigation research is to build an intelligent agent that can understand multimodal instructions including natural language and image, and perform useful navigation. To achieve this, we study a widely useful category of navigation tasks we call Multimodal Instruction Navigation wi…

Cited by 20SourceScholar
2024

Modeling the Real World with High-Density Visual Particle Dynamics

CoRL 2024poster

We present High-Density Visual Particle Dynamics (HD-VPD), a learned world model that can emulate the physical dynamics of real scenes by processing massive latent point clouds containing 100K+ particles. To enable efficiency at this scale, we introduce a novel family of Point Cloud Transformers (P…

Cited by 1SourceScholar
2024

SARA-RT: Scaling up Robotics Transformers with Self-Adaptive Robust Attention

ICRA 2024poster

We present Self-Adaptive Robust Attention for Robotics Transformers (SARA-RT): a new paradigm for addressing the emerging challenge of scaling up Robotics Transformers (RT) for on-robot deployment. SARA-RT relies on the new method of fine-tuning proposed by us, called up-training. It converts pre-tr…

Cited by 10SourceScholar
2024

Structured Unrestricted-Rank Matrices for Parameter Efficient Finetuning

NeurIPS 2024poster

Recent efforts to scale Transformer models have demonstrated rapid progress across a wide range of tasks (Wei at. al 2022). However, fine-tuning these models for downstream tasks is quite expensive due to their large parameter counts. Parameter-efficient fine-tuning (PEFT) approaches have emerged as…

2024

The Design of the Barkour Benchmark for Robot Agility

IROS 2024poster

In this paper, we describe the design of the Barkour benchmark for measuring robot agility in navigating complex environments. Despite the growing interest in developing agile robot locomotion skills, the field lacks systematic benchmarks to measure the performance of robotic control systems and har…

Cited by 1SourceScholar
2023

A Contextual Bandit Approach for Learning to Plan in Environments with Probabilistic Goal Configurations

ICRA 2023poster

Object-goal navigation (Object-nav) entails searching, recognizing and navigating to a target object. Object-nav has been extensively studied by the Embodied-AI community, but most solutions are often restricted to considering static objects (e.g., television, fridge, etc.), We propose a modular fra…

Cited by 7SourceScholar
2023

Mnemosyne: Learning to Train Transformers with Transformers

NeurIPS 2023poster

In this work, we propose a new class of learnable optimizers, called Mnemosyne. It is based on the novel spatio-temporal low-rank implicit attention Transformers that can learn to train entire neural network architectures, including other Transformers, without any task-specific optimizer tuning. We…

Cited by 8SourcePDFScholar
2023

Robotic Table Tennis: A Case Study into a High Speed Learning System

RSS 2023poster

We present a deep-dive into a real-world robotic learning system that, in previous work, was shown to be capable of hundreds of table tennis rallies with a human and has the ability to precisely return the ball to desired targets. This system puts together a highly optimized perception subsystem, a…

2023

Robotic Table Wiping via Reinforcement Learning and Whole-body Trajectory Optimization

ICRA 2023poster

We propose a framework to enable multipurpose assistive mobile robots to autonomously wipe tables to clean spills and crumbs. This problem is challenging, as it requires planning wiping actions while reasoning over uncertain latent dynamics of crumbs and spills captured via high-dimensional visual o…

Cited by 24SourceScholar
2023

Single-Level Differentiable Contact Simulation

RA-L 2023

We present a differentiable formulation of rigid-body contact dynamics for objects and robots represented as compositions of convex primitives. Classical physics engines rely on non-differentiable collision detection modules. More recent optimization-based approaches simulating contact between conve

Cited by 13SourcecodeScholar
2023

Socratic Models: Composing Zero-Shot Multimodal Reasoning with Language

ICLR 2023top-25%

We investigate how multimodal prompt engineering can use language as the intermediate representation to combine complementary knowledge from different pretrained (potentially multimodal) language models for a variety of tasks. This approach is both distinct from and complementary to the dominant par…

2022

Hybrid Random Features

ICLR 2022poster

We propose a new class of random feature methods for linearizing softmax and Gaussian kernels called hybrid random features (HRFs) that automatically adapt the quality of kernel estimation to provide most accurate approximation in the defined regions of interest. Special instantiations of HRFs lead…

2022

Learning Model Predictive Controllers with Real-Time Attention for Real-World Navigation

CoRL 2022poster

Despite decades of research, existing navigation systems still face real-world challenges when deployed in the wild, e.g., in cluttered home environments or in human-occupied public spaces. To address this, we present a new class of implicit control policies combining the benefits of imitation lear…

Cited by 53SourceScholar
2022

Multiscale Sensor Fusion and Continuous Control with Neural CDEs

IROS 2022poster

Though robot learning is often formulated in terms of discrete-time Markov decision processes (MDPs), physical robots require near-continuous multiscale feedback control. Machines operate on multiple asynchronous sensing modalities, each with different frequencies, e.g., video frames at 30Hz, propri…

Cited by 2SourceScholar
2022

Trajectory Optimization with Optimization-Based Dynamics

RA-L 2022

We present a framework for bi-level trajectory optimization in which a system’s dynamics are encoded as the solution to a constrained optimization problem and smooth gradients of this lower-level problem are passed to an upper-level trajectory optimizer. This optimization-based dynamics representati

Cited by 36SourcecodeScholar
2021

Learning to Rearrange Deformable Cables, Fabrics, and Bags with Goal-Conditioned Transporter Networks

ICRA 2021poster

Rearranging and manipulating deformable objects such as cables, fabrics, and bags is a long-standing challenge in robotic manipulation. The complex dynamics and high-dimensional configuration spaces of deformables, compared to rigid objects, make manipulation difficult not only for multi-step planni…

Cited by 200SourcecodeScholar
2021

Piecewise-Linear Motion Planning amidst Static, Moving, or Morphing Obstacles

ICRA 2021poster

We propose a novel method for planning shortest length piecewise-linear motions through complex environments punctured with static, moving, or even morphing obstacles. Using a moment optimization approach, we formulate a hierarchy of semidefinite programs that yield increasingly refined lower bounds…

Cited by 14SourceScholar
2020

Learning Stability Certificates from Data

CoRL 2020

Many existing tools in nonlinear control theory for establishing stability or safety of a dynamical system can be distilled to the construction of a certificate function which guarantees a desired property. However, algorithms for synthesizing certificate functions typically require a closed-form an

Cited by 0SourcePDFScholar
2020

Ode to an ODE

NeurIPS 2020poster

We present a new paradigm for Neural ODE algorithms, called ODEtoODE, where time-dependent parameters of the main flow evolve according to a matrix flow on the orthogonal group O(d). This nested system of two flows, where the parameter-flow is constrained to lie on the compact manifold, provides sta…

Cited by 30SourcePDFScholar
2020

Robotic Table Tennis with Model-Free Reinforcement Learning

IROS 2020poster

We propose a model-free algorithm for learning efficient policies capable of returning table tennis balls by controlling robot joints at a rate of 100Hz. We demonstrate that evolutionary search (ES) methods acting on CNN-based policy architectures for non-visual inputs and convolving across time lea…

Cited by 44SourceScholar
2020

Stochastic Flows and Geometric Optimization on the Orthogonal Group

ICML 2020poster

We present a new class of stochastic, geometrically-driven optimization algorithms on the orthogonal group O(d) and naturally reductive homogeneous manifolds obtained from the action of the rotation group SO(d). We theoretically and experimentally demonstrate that our methods can be applied in vario…

Cited by 9SourcePDFScholar
2020

Transporter Networks: Rearranging the Visual World for Robotic Manipulation

CoRL 2020

Robotic manipulation can be formulated as inducing a sequence of spatial displacements: where the space being moved can encompass an object, part of an object, or end effector. In this work, we propose the Transporter Network, a simple model architecture that rearranges deep features to infer spatia

2020

Unsupervised Anomaly Detection for Self-flying Delivery Drones

ICRA 2020poster

We propose a novel anomaly detection framework for a fleet of hybrid aerial vehicles executing high-speed package pickup and delivery missions. The detection is based on machine learning models of normal flight profiles, trained on millions of flight log measurements of control inputs and sensor rea…

Cited by 34SourceScholar
2019

Data Efficient Reinforcement Learning for Legged Robots

CoRL 2019

We present a model-based reinforcement learning framework for robot locomotion that achieves walking based on only 4.5 minutes of data collected on a quadruped robot. To accurately model the robot’s dynamics over a long horizon, we introduce a loss function that tracks the model’s prediction over mu

2019

From Complexity to Simplicity: Adaptive ES-Active Subspaces for Blackbox Optimization

NeurIPS 2019poster

We present a new algorithm (ASEBO) for optimizing high-dimensional blackbox functions. ASEBO adapts to the geometry of the function and learns optimal sets of sensing directions, which are used to probe it, on-the-fly. It addresses the exploration-exploitation trade-off of blackbox optimization with…

2019

Provably Robust Blackbox Optimization for Reinforcement Learning

CoRL 2019

Interest in derivative-free optimization (DFO) and “evolutionary strategies” (ES) has recently surged in the Reinforcement Learning (RL) community, with growing evidence that they can match state of the art methods for policy optimization problems in Robotics. However, it is well known that DFO meth

2018

Optimizing Simulations with Noise-Tolerant Structured Exploration

ICRA 2018poster

We propose a simple drop-in noise-tolerant replacement for the standard finite difference procedure used ubiquitously in blackbox optimization. In our approach, parameter perturbation directions are defined by a family of structured orthogonal matrices. We show that at the small cost of computing a…

Cited by 18SourceScholar
2018

Policies Modulating Trajectory Generators

CoRL 2018

We propose an architecture for learning complex controllable behaviors by having simple Policies Modulate Trajectory Generators (PMTG), a powerful combination that can provide both memory and prior knowledge to the controller. The result is a flexible architecture that is applicable to a class of pr

Cited by 0SourcePDFScholar
2018

Structured Evolution with Compact Architectures for Scalable Policy Optimization

ICML 2018oral

We present a new method of blackbox optimization via gradient approximation with the use of structured random orthogonal matrices, providing more accurate estimators than baselines and with provable theoretical guarantees. We show that this algorithm can be successfully applied to learn better quali…

Cited by 164SourcePDFScholar
2018

The Geometry of Random Features

AISTATS 2018poster

We present an in-depth examination of the effectiveness of radial basis function kernel (beyond Gaussian) estimators based on orthogonal random feature maps. We show that orthogonal estimators outperform state-of-the-art mechanisms that use iid sampling under weak conditions for tails of the associa…

Cited by 0SourcePDFScholar
2017

Geometry of 3D Environments and Sum of Squares Polynomials

RSS 2017poster

Motivated by applications in robotics and computer vision, we study problems related to spatial reasoning of a 3D environment using sublevel sets of polynomials. These include: tightly containing a cloud of points (e.g., representing an obstacle) with convex or nearly-convex basic semialgebraic sets…

Cited by 31SourcePDFScholar