Collision detection with V-Collide and PhysX libraries for virtual interaction with haptic interfaces

Integration of haptic devices in virtual training applications is a complex task that requires the integration of a variety of software libraries. This paper concentrates on exploring the performance of different collision detection algorithms that will allow the real-time manipulation of mixed (sup...

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Main Authors: Pinto-Salamanca, María Luisa, Sofrony-Esmeral, Jorge Ivan, Jiménez, Daniel Fernando
Format: Online
Language:spa
Published: Universidad Pedagógica y Tecnológica de Colombia 2015
Subjects:
Online Access:https://revistas.uptc.edu.co/index.php/investigacion_duitama/article/view/3721
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author Pinto-Salamanca, María Luisa
Sofrony-Esmeral, Jorge Ivan
Jiménez, Daniel Fernando
author_facet Pinto-Salamanca, María Luisa
Sofrony-Esmeral, Jorge Ivan
Jiménez, Daniel Fernando
author_sort Pinto-Salamanca, María Luisa
collection OJS
description Integration of haptic devices in virtual training applications is a complex task that requires the integration of a variety of software libraries. This paper concentrates on exploring the performance of different collision detection algorithms that will allow the real-time manipulation of mixed (superficial/volumetric) 3D virtual models, and hence the geometric manipulation of these objects in a virtual scene. Using open source software tools, a three-dimensional environment was developed with the potential interaction of force feedback and interaction within virtual components. Virtual interaction tests are presented with two haptic devices, measuring initialization times, frame rates and consumption of RAM. The results allow selecting the PhysX library compared to the V-Collide library, for analysis of collision detection in a virtual environment with tactile feedback.
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institution Revista de Investigación, Desarrollo e Innovación (RIDI)
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publishDate 2015
publisher Universidad Pedagógica y Tecnológica de Colombia
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spelling oai:oai.revistas.uptc.edu.co:article-37212018-07-10T21:53:17Z Collision detection with V-Collide and PhysX libraries for virtual interaction with haptic interfaces Detección de colisiones con librerías V-Collide y PhysX para interacción virtual con interfaces hápticas Pinto-Salamanca, María Luisa Sofrony-Esmeral, Jorge Ivan Jiménez, Daniel Fernando collision detection haptics virtual reality. detección de colisiones háptica realidad virtual. Integration of haptic devices in virtual training applications is a complex task that requires the integration of a variety of software libraries. This paper concentrates on exploring the performance of different collision detection algorithms that will allow the real-time manipulation of mixed (superficial/volumetric) 3D virtual models, and hence the geometric manipulation of these objects in a virtual scene. Using open source software tools, a three-dimensional environment was developed with the potential interaction of force feedback and interaction within virtual components. Virtual interaction tests are presented with two haptic devices, measuring initialization times, frame rates and consumption of RAM. The results allow selecting the PhysX library compared to the V-Collide library, for analysis of collision detection in a virtual environment with tactile feedback. La integración de dispositivos hápticos en aplicaciones de entrenamiento virtual es una tarea compleja que requiere la integración de una variedad de librerías de software. Este trabajo se concentra en explorar la eficiencia de distintas librerías de detección de colisiones al utilizar modelado mixto (superficial/volumétrico) 3D de objetos en una escena virtual. Aplicando herramientas  software de código abierto se desarrolla un entorno de interacción tridimensional con posibilidades de realimentación de fuerzas y de interacción entre componentes virtuales. Se presentan pruebas de interacción virtual con dos dispositivos hápticos, midiendo tiempos de inicialización, cuadros por segundo y consumo de RAM. Los resultados obtenidos argumentan la selección de la librería PhysX comparada con la librería V-Collide, para el análisis en la detección de colisiones en un entorno virtual con realimentación táctil. Universidad Pedagógica y Tecnológica de Colombia 2015-02-15 info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion application/pdf https://revistas.uptc.edu.co/index.php/investigacion_duitama/article/view/3721 10.19053/20278306.3721 Revista de Investigación, Desarrollo e Innovación; Vol. 5 No. 2 (2015): January-June; 119-128 Revista de Investigación, Desarrollo e Innovación; Vol. 5 Núm. 2 (2015): Enero-Junio; 119-128 2389-9417 2027-8306 spa https://revistas.uptc.edu.co/index.php/investigacion_duitama/article/view/3721/3270 Derechos de autor 2015 REVISTA DE INVESTIGACIÓN, DESARROLLO E INNOVACIÓN
spellingShingle collision detection
haptics
virtual reality.
detección de colisiones
háptica
realidad virtual.
Pinto-Salamanca, María Luisa
Sofrony-Esmeral, Jorge Ivan
Jiménez, Daniel Fernando
Collision detection with V-Collide and PhysX libraries for virtual interaction with haptic interfaces
title Collision detection with V-Collide and PhysX libraries for virtual interaction with haptic interfaces
title_alt Detección de colisiones con librerías V-Collide y PhysX para interacción virtual con interfaces hápticas
title_full Collision detection with V-Collide and PhysX libraries for virtual interaction with haptic interfaces
title_fullStr Collision detection with V-Collide and PhysX libraries for virtual interaction with haptic interfaces
title_full_unstemmed Collision detection with V-Collide and PhysX libraries for virtual interaction with haptic interfaces
title_short Collision detection with V-Collide and PhysX libraries for virtual interaction with haptic interfaces
title_sort collision detection with v collide and physx libraries for virtual interaction with haptic interfaces
topic collision detection
haptics
virtual reality.
detección de colisiones
háptica
realidad virtual.
topic_facet collision detection
haptics
virtual reality.
detección de colisiones
háptica
realidad virtual.
url https://revistas.uptc.edu.co/index.php/investigacion_duitama/article/view/3721
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