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Rishit Dagli

5 accepted papers

2026

Adaptive Volumetric Mechanical Property Fields Invariant to Resolution

ICML 2026poster

Accurate mechanical properties (or materials) Young's modulus ($E$), Poisson's ratio ($\nu$) and density ($\rho$) are essential for reliable physics simulation of digital worlds, but most 3D assets lack this information. We propose AdaVoMP, a method for predicting accurate dense spatially-varying $(…

Cited by 0SourceScholar
2026

Can Vision-Language Models Answer Face to Face Questions in the Real-World?

ICLR 2026poster

AI models have made significant strides in recent years in their ability to describe and answer questions about real-world images. They have also made progress in the ability to converse with users in real-time using audio input. This raises the question: have we reached the point where AI models, c…

Cited by 0SourceScholar
2026

FreeForm: Reduced-Order Deformable Simulation from Particle-Based Skinning Eigenmodes

CVPR 2026

We present a novel formulation for mesh-free, reduced-order simulation of deformable hyperelastic objects. Existing work in reduced-order elastodynamic simulation represents the input geometry by either meshes, which can be difficult to obtain due to challenges in scanning and triangulating complex

Cited by 0SourceScholar
2026

RoboLab: A High-Fidelity Simulation Benchmark for Analysis of Task Generalist Policies

RSS 2026poster

The pursuit of general-purpose robotics has yielded impressive foundation models, yet simulation-based benchmarking remains a bottleneck due to rapid performance saturation and a lack of true generalization testing. Existing benchmarks often exhibit significant domain overlap between training and ev…

Cited by 0SourceScholar
2026

VoMP: Predicting Volumetric Mechanical Property Fields

ICLR 2026poster

Physical simulation relies on spatially-varying mechanical properties, typically laboriously hand-crafted. We present the first feed-forward model to predict fine-grained mechanical properties, Young’s modulus($E$), Poisson’s ratio($\nu$), and density($\rho$), throughout *the volume* of 3D objects.…

Cited by 0SourcecodeScholar