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Self-sensing feedback compensation of non-linear hysteretic piezoceramic actuators

机译:非线性迟滞压电陶瓷执行器的自感应反馈补偿

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This paper presents a study on the linear compensation of the nonlinear hysteretic piezoelectric ceramic actuators. The strain feedback control both with the strain guage and the self-sensing techniuqe control are investigated. In the case with strain guage, the srain of the actuator is measured directly by the strain gauge, which is fed back to the input voltage to the actuator to decrease the hysteretic loop of the output displacement. For the self-sensing control, the strain of the actuator is measured by the voltage generated due to the piezoelectric effect. In this technique, the piezoelectric actuator is modeled by a combination of a capacitor and a voltage generator. The voltage caused by the piezoelectric effect is detected via a bridge circuit. The measurement is then used as a feedback signal to compensate the nonlinear actuator for the linear output. The experimental results show that the hysteretic loop on the displacement of the actuator is improved more efficiently for the self-sensing feedback control. Further, it is shown that the compensator for the self-sensing is simple and needs no additional external sensing devices.
机译:本文对非线性磁滞压电陶瓷执行器的线性补偿进行了研究。研究了采用应变仪的应变反馈控制和自感应技术控制。在使用应变计的情况下,执行器的应变通过应变计直接测量,反馈到执行器的输入电压以减小输出位移的磁滞回线。对于自感应控制,通过压电效应产生的电压来测量执行器的应变。在这种技术中,压电致动器通过电容器和电压发生器的组合来建模。由压电效应引起的电压通过电桥电路检测。然后将测量结果用作反馈信号,以补偿非线性执行器的线性输出。实验结果表明,对于自感应反馈控制,执行器位移的磁滞回线得到了更有效的改善。此外,示出了用于自感测的补偿器是简单的并且不需要额外的外部感测装置。

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