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Improvement of dynamic transparency of haptic devices by using spring balance

机译:通过弹簧平衡提高触觉设备的动态透明度

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Force-reflecting devices should be static balanced to get good transparency. Generally counterweights are added to the haptic device to achieve a completely static balance in the working space. However this may decrease considerably the dynamic performance of the device due to larger inertia. This paper presents a mixed approach which uses counterweights to balance the orientation mechanism and springs to the position mechanism of the haptic interface. As an example a PHANTOM haptic device is applied. Simulation results show that the device could be balanced in a large enough space and the amount of imbalance is within 10 grams for all points within the working area while the inertia is decreased by more than ten percent. The dynamic performance of the device is thus well enhanced.
机译:力反射装置应保持静态平衡以获得良好的透明度。通常,将配重添加到触觉设备上,以在工作空间中实现完全静态的平衡。但是,由于较大的惯性,这可能会大大降低设备的动态性能。本文提出了一种混合方法,该方法使用配重平衡触觉界面的定向机制并弹跳到触觉界面的位置机制。作为示例,应用了PHANTOM触觉设备。仿真结果表明,该设备可以在足够大的空间内保持平衡,并且工作区域内所有点的不平衡量都在10克以内,而惯性降低了10%以上。因此,设备的动态性能得到了很好的增强。

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