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Open-loop position tracking control of a piezoceramic flexible beam using a dynamic hysteresis compensator

机译:使用动态磁滞补偿器的压电陶瓷柔性梁开环位置跟踪控制

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This paper proposes a novel hysteresis compensator to enhance control accuracy in open-loop position tracking control of a piezoceramic flexible beam. The proposed hysteresis compensator consists of two components: a rate-independent hysteresis compensator and a nonlinear filter. The compensator is formulated based on the inverse Preisach model, while the weight coefficients of the filter are identified adaptively using a recursive least square (RLS) algorithm. In this work, two dynamic hysteresis compensators (or rate-independent hysteresis compensators) are developed by adopting two different nonlinear filters: Volterra and bilinear filters. In order to demonstrate the improved control accuracy of the proposed dynamic compensators, a flexible beam associated with the piezoceramic actuator is modeled using the finite element method (FEM) and Euler-Bernoulli beam theory. The beam model is then integrated with the proposed hysteresis model to achieve accurate position tracking control at the tip of the beam. An experimental investigation on the tip position tracking control is undertaken by realizing three different hysteresis compensators: a rate-independent hysteresis compensator, a rate-dependent hysteresis compensator with a Volterra nonlinear filter and a rate-independent hysteresis compensator with a bilinear nonlinear filter. It is shown that the proposed dynamic hysteresis compensators can provide much better tracking control accuracy than conventional rate-independent hysteresis compensators.
机译:本文提出了一种新型的磁滞补偿器,以提高压电陶瓷柔性梁开环位置跟踪控制中的控制精度。提出的磁滞补偿器由两个组件组成:独立于速率的磁滞补偿器和非线性滤波器。补偿器是基于反Preisach模型制定的,而滤波器的权重系数则使用递归最小二乘(RLS)算法自适应地确定。在这项工作中,通过采用两种不同的非线性滤波器:Volterra和双线性滤波器,开发了两个动态磁滞补偿器(或与速率无关的磁滞补偿器)。为了证明所提出的动态补偿器的改进控制精度,使用有限元方法(FEM)和Euler-Bernoulli束理论对与压电陶瓷执行器相关的柔性束进行建模。然后将光束模型与建议的磁滞模型集成在一起,以在光束尖端实现精确的位置跟踪控制。通过实现三种不同的磁滞补偿器来进行尖端位置跟踪控制的实验研究:速率无关的磁滞补偿器,具有Volterra非线性滤波器的速率无关的磁滞补偿器和具有双线性非线性滤波器的速率无关的磁滞补偿器。结果表明,与传统的速率无关型磁滞补偿器相比,提出的动态磁滞补偿器可以提供更好的跟踪控制精度。

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