首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Experimental study on the stability of an impedance-type force-feedback architecture based on an augmented-state observer for a haptic system under time delay using a LMI approach
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Experimental study on the stability of an impedance-type force-feedback architecture based on an augmented-state observer for a haptic system under time delay using a LMI approach

机译:LMI方法在时滞下基于增强态观测器的阻抗型力反馈架构稳定性的实验研究

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One of the most important performance measures of a haptic interface may be characterized by its behaviour in the implementation of a virtual wall in terms of the biggest value of the virtual stiffness that still leaves the device stable. This value depends on many factors including time delays and the virtual world implementation. In this paper we propose a new architecture for this latter factor based on the use of an augmented-state observer which contributes to improving, 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, some conditions expressed in terms of LMI (linear matrix inequality) for the stability of discrete-time haptic systems under constant or variable time delay are given. An implementation of a force-feedback haptic test bench is presented. The obtained experimental results confirm the efficiency of the proposed force-feedback architecture with respect to the traditional backward finite-difference method in enlarging the choice for the parameters of the virtual environment for which the haptic system is stable.
机译:触觉界面的最重要的性能指标之一可能是其在虚拟墙的实现中的行为,即仍然使设备保持稳定的虚拟刚度的最大值。该值取决于许多因素,包括时间延迟和虚拟世界的实现。在本文中,我们基于增强状态观察器的使用为后一种因素提出了一种新的体系结构,该结构相对于基于向后使用的标准实现,有助于在不增加成本的情况下提高触觉设备的性能。有限差分法。为了根据虚拟墙参数计算设备的稳定性边界,给出了在恒定或可变时间延迟下,用于离散时间触觉系统的稳定性的以LMI(线性矩阵不等式)表示的一些条件。提出了一种力反馈触觉测试台的实现。获得的实验结果证实了相对于传统的后向有限差分方法,所提出的力反馈架构在扩大对触觉系统稳定的虚拟环境的参数选择方面的效率。

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