• DocumentCode
    3597059
  • Title

    Data-flow oriented software framework for the development of haptic-enabled physics simulations

  • Author

    Knott, Thomas ; Weyers, Benjamin ; Hentschel, Bernd ; Kuhlen, Torsten

  • Author_Institution
    Virtual Reality Group, RWTH Aachen Univ., Aachen, Germany
  • fYear
    2014
  • Firstpage
    65
  • Lastpage
    72
  • Abstract
    This paper presents a software framework that supports the development of haptic-enabled physics simulations. The framework provides tools aiming to facilitate a fast prototyping process by utilizing component and flow-oriented architectures, while maintaining the capability to create efficient code which fulfills the performance requirements induced by the target applications. We argue that such a framework should not only ease the creation of prototypes but also help to effectively and efficiently evaluate them. To this end, we provide analysis tools and the possibility to build problem oriented evaluation environments based on the described software concepts. As motivating use case, we present a project with the goal to develop a haptic-enabled medical training simulator for a maxillofacial procedure. With this example, we demonstrate how the described framework can be used to create a simulation architecture for a complex haptic simulation and how the tools assist in the prototyping process.
  • Keywords
    data flow analysis; digital simulation; haptic interfaces; medical computing; physics computing; software prototyping; data-flow oriented software framework; flow-oriented architectures; haptic-enabled medical training simulator; haptic-enabled physics simulations; maxillofacial procedure; problem oriented evaluation environments; software prototyping; Bones; Computer architecture; Haptic interfaces; Receivers; Software; Solid modeling; Surgery;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Software Engineering and Architectures for Realtime Interactive Systems (SEARIS), 2014 IEEE 7th Workshop on
  • Type

    conf

  • DOI
    10.1109/SEARIS.2014.7152803
  • Filename
    7152803