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Inverse Compensation Based Synchronization Control of the Piezo-Actuated Fabry–Perot Spectrometer

机译:压电驱动法布里-珀罗光谱仪的基于逆补偿的同步控制

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摘要

In this paper, three parallel piezoelectric actuators (PEAs) are utilized in a Fabry–Perot (F–P) system for tuning the gap spacing between two optical lenses. Due to the nonlinear hysteresis effect in the PEAs and uneven preload conditions in the F–P system, the motion of the three PEAs is not synchronized and their input and output responses show coupled hysteresis behaviors. To compensate for the coupled hysteresis effects, a coupled hysteresis model combining with available hysteresis operators and neural network is proposed and its inverse compensator is constructed. Since the inverse compensation method is an open-loop method, the synchronization of three PEAs cannot be guaranteed. To overcome this problem, an linear–quadratic–gaussian (LQG) controller with a synchronization strategy is deployed with the developed inverse compensation method. The experimental results demonstrate that the proposed method can effectively mitigate the coupled hysteresis effects and guarantee the synchronized motion of the three PEAs.
机译:在本文中,在Fabry-Perot(FP)系统中使用了三个并联的压电致动器(PEA)来调节两个光学透镜之间的间隙。由于PEA中的非线性磁滞效应以及F-P系统中不均匀的预紧条件,三个PEA的运动不同步,并且它们的输入和输出响应显示出耦合的磁滞行为。为了补偿耦合磁滞效应,提出了一种结合了可用磁滞算子和神经网络的耦合磁滞模型,并构造了其逆补偿器。由于逆补偿方法是一种开环方法,因此无法保证三个PEA的同步。为了克服这个问题,采用开发的逆补偿方法部署了具有同步策略的线性二次高斯(LQG)控制器。实验结果表明,该方法可以有效地减轻耦合滞后效应,保证三个PEA的同步运动。

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