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Computer Science

D-Index
56
Citations
9868
World Ranking
4152
National Ranking
161

Overview

Dinesh K. Pai is affiliated with the University of British Columbia in Canada, contributing extensively to the field of engineering. Their research spans several specialized subfields including Control and Systems Engineering, Mechanics of Materials, Computational Mechanics, Computer Graphics and Computer-Aided Design, and Statistical and Nonlinear Physics.

Their work addresses diverse topics such as Dynamics and Control of Mechanical Systems, Adhesion, Friction, and Surface Interactions, Computer Graphics and Visualization Techniques, 3D Shape Modeling and Analysis, Model Reduction and Neural Networks, Sports Performance and Training, and Optical Imaging and Spectroscopy Techniques.

Dinesh K. Pai has authored multiple papers in prominent venues, with some recent publications including:

  • Practical Measurement and Reconstruction of Spectral Skin Reflectance, 2020, Computer Graphics Forum
  • Frictional Contact on Smooth Elastic Solids, 2021, ACM Transactions on Graphics
  • SIERE, 2020, ACM Transactions on Graphics
  • Simulating deformable objects for computer animation: A numerical perspective, 2021, Journal of Computational Dynamics
  • In situ measurement of friction on the human body, 2023, Tribology International

Frequent publication venues for their work also include IEEE Consumer Electronics Magazine and arXiv (Cornell University).

The scholar collaborates regularly with several co-authors, maintaining multiple joint research projects. Frequent collaborators include Egor Larionov, Uri M. Ascher, Seung Heon Sheen, Andreas Longva, and Jan Bender.

The research contributions of Dinesh K. Pai predominantly focus on advancing knowledge in engineering by exploring the mechanics and dynamics of materials, computational techniques for simulations, and visualization methods integral to computer graphics.

Best Publications

  • ArtDefo: accurate real time deformable objects

    Doug L. James;Dinesh K. Pai

  • FoleyAutomatic: physically-based sound effects for interactive simulation and animation

    Kees van den Doel;Paul G. Kry;Dinesh K. Pai

  • STRANDS: Interactive Simulation of Thin Solids using Cosserat Models

    Dinesh K. Pai

  • EigenSkin: real time large deformation character skinning in hardware

    Paul G. Kry;Doug L. James;Dinesh K. Pai

  • BD-tree: output-sensitive collision detection for reduced deformable models

    Doug L. James;Dinesh K. Pai

  • Scanning physical interaction behavior of 3D objects

    Dinesh K. Pai;Kees van den Doel;Doug L. James;Jochen Lang

  • DyRT: dynamic response textures for real time deformation simulation with graphics hardware

    Doug L. James;Dinesh K. Pai

  • Perception of Material from Contact Sounds

    Roberta L. Klatzky;Dinesh K. Pai;Eric P. Krotkov

  • Musculotendon simulation for hand animation

    Shinjiro Sueda;Andrew Kaufman;Dinesh K. Pai

  • Staggered projections for frictional contact in multibody systems

    Danny M. Kaufman;Shinjiro Sueda;Doug L. James;Dinesh K. Pai

  • Differences in Adaptation Rates after Virtual Surgeries Provide Direct Evidence for Modularity

    Denise J. Berger;Reinhard Gentner;Timothy Edmunds;Dinesh K. Pai

  • Precomputed acoustic transfer: output-sensitive, accurate sound generation for geometrically complex vibration sources

    Doug L. James;Jernej Barbič;Dinesh K. Pai

  • Scanning physical interaction behavior of 3D objects

    Unknown

  • Interaction capture and synthesis

    Paul G. Kry;Dinesh K. Pai

  • A unified treatment of elastostatic contact simulation for real time haptics

    Doug L. James;Dinesh K. Pai

  • Fast frictional dynamics for rigid bodies

    Danny M. Kaufman;Timothy Edmunds;Dinesh K. Pai

  • The Sounds of Physical Shapes

    Kees van den Doel;Dinesh K. Pai

  • Haptic texturing-a stochastic approach

    J. Siira;D.K. Pai

  • Multiresolution rough terrain motion planning

    D.K. Pai;L.-M. Reissell

  • Quasi-rigid objects in contact

    Mark Pauly;Dinesh K. Pai;Leonidas J. Guibas

  • ACCURATE REAL TIME DEFORMABLE OBJECTS

    D. L. James;D. K. Pai

  • Performance Measures for

    Locomotion Robots;Kees van den Doel;Dinesh K. Pai

Frequent Co-Authors

Doug L. James
Doug L. James Stanford University
Uri M. Ascher
Uri M. Ascher University of British Columbia
Andrea d'Avella
Andrea d'Avella University of Messina
Bruce R. Donald
Bruce R. Donald Duke University
Matthew T. Mason
Matthew T. Mason Carnegie Mellon University
Ming-Chuan Leu
Ming-Chuan Leu Missouri University of Science and Technology
John D. Steeves
John D. Steeves University of British Columbia
Ronan Boulic
Ronan Boulic École Polytechnique Fédérale de Lausanne
Roberta L. Klatzky
Roberta L. Klatzky Carnegie Mellon University

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