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首页> 外文期刊>Mechanical systems and signal processing >Kalman filter-based loading rate-dependent hysteresis compensation of flexoelectric torsional responses in polyvinylidene fluoride films for shaft torque sensors
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Kalman filter-based loading rate-dependent hysteresis compensation of flexoelectric torsional responses in polyvinylidene fluoride films for shaft torque sensors

机译:基于卡尔曼滤波器的加载速率依赖性滞后补偿,用于轴扭矩传感器的聚偏氟氟醚膜中的柔性电扭转响应

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摘要

This paper presents a new method of dynamic shaft torque measurement using polyvinylidene fluoride (PVDF) films, one of the new polymer type piezoelectric conversion materials. The measurement method is based on the shear strain gradient and the flexoelectric torsional response of the PVDF films. The loading rate-dependent hysteresis associated with viscoelastic behavior of PVDF film was modeled to estimate the torque input. The torque estimated by the proposed hysteresis model and optimization algorithm (genetic algorithm) can be implemented by the discrete Kalman filter. Because the torque estimated by the real-time Kalman filtering matches well with the actual torque input measured by the commercial in-line torque transducer, a new method of sensing the dynamic shaft torque using the PVDF output signal has been experimentally validated. This study offers potential applications for the development of new torque sensing technology to be widely used in a variety of mechanical engineering areas such as turbines, rotors, automobiles, and robotics.
机译:本文介绍了一种新的使用聚偏二氟乙烯(PVDF)薄膜动态轴扭矩测量方法,该方法是新的聚合物型压电转换材料之一。测量方法基于剪切应变梯度和PVDF膜的柔性电扭转响应。建模与PVDF膜的粘弹性行为相关的加载速率依赖性滞后,以估计扭矩输入。由所提出的滞后模型和优化算法(遗传算法)估计的扭矩可以由离散的卡尔曼滤波器实现。因为由实时卡尔曼滤波估计的扭矩与由商业在线扭矩换能器测量的实际扭矩输入匹配良好,所以使用PVDF输出信号感测动态轴扭矩的新方法已经通过实验验证。本研究提供了开发新的扭矩传感技术的潜在应用,以广泛应用于各种机械工程领域,如涡轮机,转子,汽车和机器人。

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