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Experimental comparison of slip detection strategies by tactile sensing with the BioTac

机译:通过BioTac的触觉进行滑差检测策略的实验比较

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Dexterous manipulation of everyday objects requires a precise tactile sense. Slip detection is mandatory to overcome uncertainty and compensate for external disturbances. We compare three different approaches for detecting slip. The methods are model-based slip detection via friction cones, vibration-based detection via bandpass filtering, and a common learning algorithm. They are implemented and tested on a tendon-driven two-finger setup equipped with two tactile BioTac® sensors. Several experiments are conducted to evaluate each approach. The characteristics of the methods are discussed and compared.
机译:日常物品的灵巧操纵需要精确的触觉。滑差检测对于克服不确定性和补偿外部干扰是必不可少的。我们比较了三种检测滑移的方法。这些方法是通过摩擦锥进行基于模型的滑动检测,通过带通滤波进行基于振动的检测以及通用学习算法。它们在配有两个触觉BioTac®传感器的腱驱动的两指装置上进行实施和测试。进行了几次实验以评估每种方法。讨论并比较了这些方法的特征。

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