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Increasing the impedance range of a haptic display by adding electrical damping

机译:通过添加电阻增加触觉显示器的阻抗范围

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This work examines electrical damping as a means for improving haptic display performance. Specifically, electrical damping, like its mechanical counterpart, can significantly reduce the occurrences of limit cycle oscillations at high impedance boundaries in virtual environments. Furthermore, electrical damping has a number of advantages including its simplicity of design and the ease at which it can be made frequency dependent so that it does not adversely affect a device's low impedance range. This work examines the theoretical behavior and practical application of frequency dependent electrical damping as it applies to haptic displays. Data is presented illustrating a significant increase in the range of virtual wall behaviors that a one degree-of-freedom device is capable of displaying when electrical damping is added.
机译:这项工作检查了电阻作为提高触觉显示性能的手段。具体地,与其机械对应物一样,电气阻尼可以显着降低虚拟环境中的高阻抗边界处的极限周期振荡的发生。此外,电阻具有许多优点,包括其简单性的设计和能够使频率取决于所以不会对设备的低阻抗范围产生不利影响。这项工作审查了频率依赖性电阻的理论行为和实际应用,因为它适用于触觉显示。提出了数据,示出了一种自由度装置在添加电阻时能够显示的虚拟壁行为范围的显着增加。

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