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A vision-based vibration sensing and active control for a piezoelectric flexible cantilever plate

机译:压电柔性悬臂板的基于视觉的振动传感和主动控制

摘要

A visual sensor is used to measure the vibration of a piezoelectric flexible cantilever plate. To decrease the image processing time and satisfy the requirement of real-time application, the searching range is limited by selecting region of interest images and using a tracking technique. After image processing, including median filter, image segmentation for object recognition, least squares technique, the vibrations of bending and torsional modes for flexible plate can be obtained. The visual measured signals are used as feedback to suppress the excited vibrations. The conventional proportional plus derivative (PD) control and finite-time control algorithms are designed and implemented. The experiments are conducted. The decoupling of measurement of the bending and torsional vibrations is realized by the visual sensor accompany with applying the image processing methods. Experimental results demonstrate that the designed control algorithm can suppress the low-frequency vibration effectively. Furthermore, the finite-time controller can damp out the small amplitude vibration much better than that of the PD control.
机译:视觉传感器用于测量压电柔性悬臂板的振动。为了减少图像处理时间并满足实时应用的需求,通过选择关注区域图像并使用跟踪技术来限制搜索范围。经过图像处理,包括中值滤波,用于对象识别的图像分割,最小二乘技术,可以获得挠性板的弯曲振动和扭转振动。视觉测量信号用作抑制激振的反馈。设计并实现了常规的比例加微分(PD)控制和有限时间控制算法。进行实验。弯曲和扭转振动的测量解耦是通过视觉传感器与应用图像处理方法一起实现的。实验结果表明,所设计的控制算法能够有效抑制低频振动。此外,与PD控制相比,限时控制器可以更好地衰减小振幅振动。

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