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A novel mechatronic system for measuring end-point stiffness: Mechanical design and preliminary tests

机译:一种用于测量端点刚度的新型机电一体化系统:机械设计和初步测试

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Measuring arm stiffness is of great interest for many disciplines from biomechanics to medicine especially because modulation of impedance represents one of the main mechanism underlying control of movement and interaction with external environment. Previous works have proposed different methods to identify multijoint hand stiffness by using planar or even tridimensional haptic devices, but the associated computational burden makes them not easy to implement. We present a novel mechanism conceived for measuring multijoint planar stiffness by a single measurement and in a reduced execution time. A novel mechanical rotary device applies cyclic radial perturbation to human arm of a known displacement and the force is acquired by means of a 6-axes commercial load cell. The outcomes suggest that the system is not only reliable but allows obtaining a bi-dimensional estimation of arm stiffness in reduced amount of time and the results are comparable with those reported in previous researches.
机译:从生物力学到医学,测量臂的刚度对许多学科都非常感兴趣,特别是因为阻抗的调制代表了控制运动以及与外部环境相互作用的主要机制之一。先前的工作提出了使用平面或什至三维的触觉设备来识别多关节手刚度的不同方法,但是相关的计算负担使其难以实现。我们提出了一种新颖的机制,旨在通过单次测量并以减少的执行时间来测量多关节平面刚度。一种新颖的机械旋转装置对已知位移的人手臂施加周期性的径向扰动,并通过六轴商业称重传感器获得力。结果表明,该系统不仅可靠,而且可以在减少的时间内获得手臂刚度的二维估算,其结果与以前的研究报道的结果相当。

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