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Nonlinear attributes modeling and analysis of harmonic drive manipulator joint

机译:谐波传动机械手关节非线性属性建模与分析

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Harmonic drive transmission has been widely used in such accurate and reliable positioning and tracking fields as space mechanisms, robotics and high precision machines. However, the performance of harmonic drives is deteriorated by inherent nonlinear attributes including nonlinear stiffness, hysteresis, clearance, nonlinear friction, pure kinematic error and damping. Accurate modeling of the nonlinear attributes and analysis of their effects on system performance is crucial to improve the precision and reliability in positioning and tracking missions. In this work, a new model of harmonic transmission that comprehensively includes all the observed nonlinear attributes is proposed. In this model, nonlinear stiffness, hysteresis and joint clearance are modeled in an ordinary differential equation with coupled form, and its algebraic form under periodic input is put forward. The correctness and practicability are verified by using experiments data in previous studies. The comparison results show that the newly developed model has a 2.35% error. Then effects of these nonlinear attributes on system performance are studied. The main results show that the joint clearance effect leads to stiffness soften and deteriorates the velocity tracking performance. Furthermore, this analysis also reveals the velocity effects on position-tracking performance deterioration and `soft wind-up' behavior in harmonic drives.
机译:谐波传动装置已广泛用于诸如空间机构,机器人技术和高精度机器之类的准确和可靠的定位和跟踪领域。但是,谐波驱动器的性能因固有的非线性属性而变差,这些属性包括非线性刚度,磁滞,游隙,非线性摩擦,纯运动误差和阻尼。非线性属性的准确建模及其对系统性能的影响分析对于提高定位和跟踪任务的精度和可靠性至关重要。在这项工作中,提出了一种新的谐波传输模型,该模型全面包含了所有观察到的非线性属性。在该模型中,将非线性刚度,磁滞和关节间隙建模为具有耦合形式的常微分方程,并提出其在周期输入下的代数形式。通过使用先前研究中的实验数据验证了正确性和实用性。比较结果表明,新开发的模型具有2.35%的误差。然后研究了这些非线性属性对系统性能的影响。主要结果表明,关节间隙效应导致刚度软化并降低了速度跟踪性能。此外,该分析还揭示了速度对谐波驱动中的位置跟踪性能下降和“软缠绕”行为的影响。

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