Efficient Point-Based Rendering Techniques for Haptic Display of Virtual Objects

Author:

Ho Chih-Hao1,Basdogan Cagatay1,Srinivasan Mandayam A.1

Affiliation:

1. Laboratory for Human and Machine Haptics Department of Mechanical Engineering and Research Laboratory of Electronics Massachusetts Institute of Technology Cambridge, MA 02139 ,

Abstract

Computer haptics, an emerging field of research that is analogous to computer graphics, is concerned with the generation and rendering of haptic virtual objects. In this paper, we propose an efficient haptic rendering method for displaying the feel of 3-D polyhedral objects in virtual environments (VEs). Using this method and a haptic interface device, the users can manually explore and feel the shape and surface details of virtual objects. The main component of our rendering method is the “neighborhood watch” algorithm that takes advantage of precomputed connectivity information for detecting collisions between the end effector of a force-reflecting robot and polyhedral objects in VEs. We use a hierarchical database, multithreading techniques, and efficient search procedures to reduce the computational time such that the haptic servo rate after the first contact is essentially independent of the number of polygons that represent the object. We also propose efficient methods for displaying surface properties of objects such as haptic texture and friction. Our haptic-texturing techniques and friction model can add surface details onto convex or concave 3-D polygonal surfaces. These haptic-rendering techniques can be extended to display dynamics of rigid and deformable objects.

Publisher

MIT Press - Journals

Subject

Computer Vision and Pattern Recognition,Human-Computer Interaction,Control and Systems Engineering,Software

Reference24 articles.

Cited by 94 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Haptic texture rendering based on vision;International Conference on Computer Network Security and Software Engineering (CNSSE 2024);2024-06-06

2. Advancing haptic interfaces for immersive experiences in the metaverse;Device;2024-06

3. Individuals with and without Visual Impairments Use a Force Feedback Device to Identify the Friction and Hardness of Haptic Surfaces;Sensors;2022-12-12

4. Skill learning approach based on impedance control for spine surgical training simulators with haptic playback;Proceedings of the Institution of Mechanical Engineers, Part I: Journal of Systems and Control Engineering;2022-11-04

5. Hasti: Haptic and Audio Synthesis for Texture Interactions;2021 IEEE World Haptics Conference (WHC);2021-07-06

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