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Modeling asymmetric and large-displacement hysteresis in piezoelectric actuators

机译:压电执行器中的不对称和大型位移滞后

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Hysteresis is the main form of nonlinearity in piezoelectric actuators. It has a nonlocal memory and an asymmetric loop between the ascending and descending paths. Due to these properties, the tracking ability of piezoelectric actuators is limited in micro/nano manipulation systems. This paper proposes an asymmetric and large-displacement hysteresis model to compensate the effect of hysteresis in piezoelectric actuators when input voltage surpasses the inflexion point of the ascending curve. The experimental results show that the new model can accurately predict the response of hysteresis nonlinearity in piezoelectric actuators.
机译:滞后是压电致动器中非线性的主要形式。 它具有非本体存储器和上升路径之间的非对称环路。 由于这些特性,压电致动器的跟踪能力在微/纳米操纵系统中受到限制。 本文提出了一种不对称和大型位移滞后模型,以补偿压电致动器滞后在输入电压超出升序曲线的拐点点时的影响。 实验结果表明,新模型可以准确地预测压电致动器中滞后非线性的响应。

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