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Motor selection via impedance-matching for driving nonlinearly damped, resonant loads

机译:通过阻抗匹配选择电机,以驱动非线性阻尼的谐振负载

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摘要

This paper presents a novel method for selecting the most appropriate motor-gearhead combination for nonlinearly damped, resonant loads. The method extends to the nonlinear damping case the impedance-matching condition which is used to guarantee a maximum power transfer in linear network theory. In particular, the method is applicable in general to resonant loads where the damping is an odd and memoryless nonlinear function of the velocity. This condition is very common in biomimetic robotics, in particular when designing propulsion systems based on flapping appendages, such as wings or fins, in viscous fluids, such as air or water. The method is graphical in nature and is based on a power vs. impedance-mismatch factor. Such a factor is function of the ratio of the motor armature resistance to the load equivalent resistive impedance reflected at the motor armature, where the latter is nonlinear and depends on the desired kinematics as well as on the transmission ratio and efficiency. The method allows comparing, for a given desired appendage kinematics, all motor-gearhead combinations at once while taking into account all possible constraints such as maximum current, power, and torque.
机译:本文提出了一种针对非线性阻尼共振负载选择最合适的电动机-减速器组合的新颖方法。该方法扩展到非线性阻尼情况下的阻抗匹配条件,该条件用于保证线性网络理论中的最大功率传输。特别地,该方法通常适用于共振负载,其中阻尼是速度的奇数且无记忆的非线性函数。这种情况在仿生机器人中非常普遍,尤其是在设计基于拍打附件(例如机翼或鳍)的粘性流体(例如空气或水)的推进系统时。该方法本质上是图形化的,并且基于功率与阻抗不匹配因子。该因素是电动机电枢电阻与在电动机电枢处反射的负载等效电阻抗之比的函数,其中后者是非线性的,取决于所需的运动学以及传动比和效率。该方法允许针对给定的所需附件运动学,同时考虑所有可能的约束(例如最大电流,功率和扭矩),一次比较所有电机-减速器组合。

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