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Energy-Consistent Force Feedback Laws for Virtual Environments

机译:虚拟环境中的能量一致力反馈定律

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摘要

When digitally realized, virtual environments (VEs) do not perfectly match the physical environments they are supposed to emulate. This paper deals with energy aspects of such a mismatch, i.e., artificial energy leaks. A methodology is developed that employs smooth correction (SC) and leak dissipation (LD) to achieve a stable interconnection of the VE with the haptic device. The SC-LD naturally blends with the original laws for rendering the VE and gives rise to modified force feedback laws. These laws can be regarded as energy-consistent discretizations of their continuous-time counterparts. For some fundamental examples including virtual springs and masses, these laws are analytically reduced to simple closed-form equations. The methodology is then generalized to the mul-tivariable case. Several experiments are conducted including a 2-DOF coupled nonlinear VE example, and a scenario leading to a sequence of contacts with a virtual object. Besides the conceptual advantage, simulation and experimental results demonstrate some other advantages of the SC-LD over well-known time-domain passivity methods. These advantages include improved fidelity, simpler implementation, and less susceptibility to produce impulsive/chattering response.
机译:当以数字方式实现时,虚拟环境(VE)不能完美地匹配它们应该模拟的物理环境。本文讨论了这种失配的能源方面,即人为能源泄漏。开发了一种方法,该方法采用平滑校正(SC)和泄漏耗散(LD)来实现VE与触觉设备的稳定互连。 SC-LD自然地与用于绘制VE的原始定律融合在一起,并产生了修改后的力反馈定律。这些定律可以看作是其连续时间对应物的能量一致离散。对于包括虚拟弹簧和质量在内的一些基本示例,这些定律在分析上被简化为简单的闭合形式方程。然后将该方法推广到多变量情况。进行了一些实验,包括2自由度耦合的非线性VE示例,以及导致与虚拟对象进行一系列接触的场景。除了概念上的优势之外,仿真和实验结果还证明了SC-LD优于已知的时域无源方法的其他优势。这些优点包括提高保真度,更简单的实现以及更少产生脉冲/颤动响应的敏感性。

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  • 来源
    《Journal of Computing and Information Science in Engineering》 |2013年第3期|031003.1-031003.13|共13页
  • 作者

    Arash Mohtat; Jozsef Koevecses;

  • 作者单位

    Department of Mechanical Engineering and Centre for Intelligent Machines, McGill University Montreal, Quebec, Canada;

    Department of Mechanical Engineering and Centre for Intelligent Machines, McGill University Montreal, Quebec, Canada;

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  • 正文语种 eng
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