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Rishabh Madan

6 accepted papers

2026

TACTIC: Tactile and Vision Conditioned Contact-Centric Control for Whole-Arm Manipulation

RSS 2026poster

Whole-arm manipulation involves direct contact with the environment while the robot completes a task by distributing contact across multiple links as contacts form, slide, and break. This setting breaks common implicit assumptions in many learning-based manipulation pipelines: arm configuration tigh…

Cited by 0SourceScholar
2025

PrioriTouch: Adapting to User Contact Preferences for Whole-Arm Physical Human-Robot Interaction

CoRL 2025poster

Many robot caregiving tasks, such as bathing, dressing, and transferring, require a robot arm to make contact with a human body at multiple points rather than solely at the end effector. However, varied human touch preferences can lead to unsafe or uncomfortable multi-contact interactions. To addres…

Cited by 0SourceScholar
2024

CushSense: Soft, Stretchable, and Comfortable Tactile-Sensing Skin for Physical Human-Robot Interaction

ICRA 2024poster

Whole-arm tactile feedback is crucial for robots to ensure safe physical interaction with their surroundings. This paper introduces CushSense, a fabric-based soft and stretchable tactile-sensing skin designed for physical human-robot interaction (pHRI) tasks such as robotic caregiving. Using stretch…

Cited by 7SourceScholar
2022

Benchmarking Structured Policies and Policy Optimization for Real-World Dexterous Object Manipulation

RA-L 2022

Dexterous manipulation is a challenging and important problem in robotics. While data-driven methods are a promising approach, current benchmarks require simulation or extensive engineering support due to the sample inefficiency of popular methods. We present benchmarks for the TriFinger system, an

Cited by 39SourcecodeScholar
2022

SPARCS: Structuring Physically Assistive Robotics for Caregiving with Stakeholders-in-the-loop

IROS 2022poster

Existing work in physical robot caregiving is limited in its ability to provide long-term assistance. This is majorly due to (i) lack of well-defined problems, (ii) diversity of tasks, and (iii) limited access to stakeholders from the caregiving community. We propose Structuring Physically Assistive…

Cited by 14SourceScholar
2020

Multimodal Trajectory Prediction via Topological Invariance for Navigation at Uncontrolled Intersections

CoRL 2020

We focus on decentralized navigation among multiple non-communicating rational agents at {\em uncontrolled} intersections, i.e., street intersections without traffic signs or signals. Avoiding collisions in such domains relies on the ability of agents to predict each others’ intentions reliably, and