Title of article :
Shadow-Driven 4D Haptic Visualization
Author/Authors :
Hui Zhang، نويسنده , , Hanson، نويسنده , , A.J.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2007
Abstract :
Just as we can work with two-dimensional floor plans to communicate 3D architectural design, we can exploit reduceddimension
shadows to manipulate the higher-dimensional objects generating the shadows. In particular, by taking advantage of
physically reactive 3D shadow-space controllers, we can transform the task of interacting with 4D objects to a new level of physical
reality. We begin with a teaching tool that uses 2D knot diagrams to manipulate the geometry of 3D mathematical knots via their
projections; our unique 2D haptic interface allows the user to become familiar with sketching, editing, exploration, and manipulation
of 3D knots rendered as projected images on a 2D shadow space. By combining graphics and collision-sensing haptics, we can
enhance the 2D shadow-driven editing protocol to successfully leverage 2D pen-and-paper or blackboard skills. Building on the
reduced-dimension 2D editing tool for manipulating 3D shapes, we develop the natural analogy to produce a reduced-dimension 3D
tool for manipulating 4D shapes. By physically modeling the correct properties of 4D surfaces, their bending forces, and their collisions
in the 3D haptic controller interface, we can support full-featured physical exploration of 4D mathematical objects in a manner that
is otherwise far beyond the experience accessible to human beings. As far as we are aware, this paper reports the first interactive
system with force-feedback that provides “4D haptic visualization” permitting the user to model and interact with 4D cloth-like objects.
Keywords :
Knot Theory , haptics , visualization
Journal title :
IEEE TRANSACTIONS ON VISUALIZATION AND COMPUTER GRAPHICS
Journal title :
IEEE TRANSACTIONS ON VISUALIZATION AND COMPUTER GRAPHICS