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Integrated Capacitance Sensing for Miniature Artificial Muscle Actuators

机译:用于微型人工肌动肌执行器的集成电容感测

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The use of McKibben pneumatic artificial muscles in surgical instruments is increasing due to their light weight, miniaturization potential, compliance and large actuation force. However, precise position and force control is still challenging due to the intrinsic muscle hysteresis. The present work proposes an easy-to-make integrated capacitance sensor for miniature artificial muscles by replacing two strands of the muscle braid with two conductive wires. By measuring the capacitance at high excitation frequency between both wires, the length of the muscle can be deduced. This new integrated sensor still allows the miniaturization of McKibben muscles. The miniature muscle with integrated capacitance sensing only loses 3% of its contraction length with regard to an original McKibben muscle. The sensor can predict the muscle length with a 0.31mm precision over 80% of the muscle total achievable contraction range in average.
机译:由于重量轻,小型化电位,符合性和大的致动力,使用McKibben气动人工肌肉在外科器械中越来越大。然而,由于内在的肌滞后,精确的位置和力控制仍然挑战。本工作提出了一种易于制造的集成电容传感器,用于通过用两个导线替换两条肌肉织布的两条股来制造微型人工肌肉。通过在两根线之间的高励磁频率下测量电容,可以推导肌肉的长度。这个新的集成传感器仍然可以允许Mckibben肌肉的小型化。具有集成电容感测的微型肌肉仅导致原始Mckben肌肉的收缩长度的3%。传感器可以平均预测肌肉长度为0.31mm精度超过80%的肌肉总可实现的收缩范围。

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