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Dynamic analysis of pneumatic artificial muscle (PAM) actuator for rehabilitation with principal parametric resonance condition

机译:具有主要参数共振条件的康复性气动人工肌肉(PAM)致动器的动态分析

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摘要

In this present work, the dynamic behavior of a pneumatic artificial muscle (PAM) has been studied by varying different muscle parameters and air pressure into it. The governing equation of motion has been derived using Newton's law of motion to study the various responses in the system at principal parametric resonance condition. The temporal equation of motion contains various nonlinear parameters with forced and nonlinear parametric excitation. Then, the second-order method of multiple scales is used to find the approximate solutions and to study the dynamic stability and bifurcations of the system. The results are found to be in good agreement with the solutions obtained by solving the temporal equation of motion numerically. The instability regions by varying different system parameters have been plotted. The time responses and phase portraits have been plotted to study the system behavior with the nonlinearity. The influences of the different system parameters in the amplitude for the muscle have also been studied with the help frequency responses. In order to verify the solution, the basin of attraction has also been plotted. The obtained results will be very useful for designing the desired PAM use in different rehabilitation robotics and exoskeleton system.
机译:在本工作中,通过改变不同的肌肉参数和空气压力来研究充气人工肌肉(PAM)的动态行为。通过牛顿运动定律来源的管理方程,以研究在主参数共振条件下系统中的各种反应。运动时间方程包含强制和非线性参数激励的各种非线性参数。然后,使用多尺度的二阶方法来查找近似解,并研究系统的动态稳定性和分叉。结果,结果与通过在数值上求解时间的运动时间方程获得的溶液吻合良好。绘制了通过改变不同的系统参数来稳定区域。已经绘制了时间响应和相位肖像以研究与非线性的系统行为。还研究了不同系统参数在肌肉幅度中的影响,并用帮助频率响应研究。为了验证解决方案,还绘制了吸引力的盆地。获得的结果对于在不同康复机器人和外骨骼系统中设计所需的PAM使用非常有用。

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