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Augmented observer approach for high-impedance haptic system with time delay

机译:具有时滞的高阻抗触觉系统的增强观测器方法

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Among others measures of performance, a haptic device may be characterized by its behavior in the implementation of a virtual wall in terms of the biggest value of the virtual stiffness leaving stable the device. This value depends on many factors including time delays and the virtual world implementation. The paper proposes a new architecture for this latter one based on the use of an augmented state observer which contributes to improve without additional costs the performance of a haptic device with respect to the standard implementation based on the use of the backward finite difference method. In order to compute the stability boundaries of the device in terms of virtual wall parameters, a new LMI criterion for the stability of discrete-time systems with time-varying delay is given. Some numerical simulation results are included to prove the effectiveness of the proposed approach.
机译:在性能的其他度量中,触觉设备可以通过其在虚拟墙的实现中的行为来表征,即虚拟刚度的最大值保持设备稳定。该值取决于许多因素,包括时间延迟和虚拟世界的实现。本文基于增强状态观察器的使用,为后一种提出了一种新的体系结构,该体系结构相对于基于后向有限差分方法的标准实现,有助于在不增加成本的情况下提高触觉设备的性能。为了根据虚拟墙参数计算设备的稳定性边界,给出了具有时变时滞的离散时间系统稳定性的新的LMI准则。包括一些数值模拟结果,以证明该方法的有效性。

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