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Stable haptic interaction with virtual environments

机译:与虚拟环境的稳定触觉交互

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This paper addresses fundamental stability and performance issues associated with haptic interaction. It generalizes and extends the concept of a virtual coupling network, an artificial link between the haptic display and a virtual world, to include both the impedance and admittance models of haptic interaction. A benchmark example exposes an important duality between these two cases. Linear circuit theory is used to develop necessary and sufficient conditions for the stability of a haptic simulation, assuming the human operator and virtual environment are passive. These equations lead to an explicit design procedure for virtual coupling networks which give maximum performance while guaranteeing stability. By decoupling the haptic display control problem from the design of virtual environments, the use of a virtual coupling network frees the developer of haptic-enabled virtual reality models from issues of mechanical stability.
机译:本文讨论了与触觉交互相关的基本稳定性和性能问题。它概括并扩展了虚拟耦合网络的概念,即触觉显示器和虚拟世界之间的虚假链接,以包括触觉交互的阻抗模型和导纳模型。一个基准示例暴露了这两种情况之间的重要对偶性。假设人类操作员和虚拟环境是被动的,则使用线性电路理论来为触觉仿真的稳定性开发必要和充分的条件。这些方程式导致虚拟耦合网络的显式设计程序得以实现,同时又保证了稳定性。通过将触觉显示控制问题与虚拟环境的设计分离,虚拟耦合网络的使用使开发支持触觉的虚拟现实模型的开发人员摆脱了机械稳定性问题。

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