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Fractional PID controller in an active image stabilization system for mitigating vibration effects in agricultural tractors

机译:主动图像稳定系统中的分数PID控制器,用于减轻农用拖拉机的振动影响

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摘要

Recent demands in sophisticated agricultural machinery require passive or active image sensors to be mounted on vehicle frames. The impact produced by vertical displacements due to tire-soil interaction and mechanical engine vibration causes oscillations that reduce the data quality of any activity performed by equipment such as a camera, spectroradiometer, or scanner laser. This paper presents the modeling and simulation of an active system for stabilization of oscillations using a fractional order PID (Proportional-Integral-Derivative) controller. A method for tuning the fractional order PID is presented for a closed-loop dynamic system. Experiments based on simulations are carried out to compare the performance of the active stabilization system with fractional and integer order PID controllers. Common excitation functions are used to assess the performance of the active stabilization system, along with some common vibration disturbances acquired by a field experiment with a tractor-implement set. The results show that the active stabilization system presents better performance, mitigating vibration displacements and accelerations through a closed-loop system with a fractional PID controller. Additionally, numerical results confirm the superior capacity of the fractional controller based system for attenuating the vibration disturbance compared to the classical PID system for different machinery operational conditions such as forward speed and load. (C) 2016 Elsevier B.V. All rights reserved.
机译:先进农业机械的最新需求要求将无源或有源图像传感器安装在车架上。由于轮胎-土壤相互作用和发动机机械振动而引起的垂直位移产生的冲击会导致振荡,从而降低相机,光谱辐射仪或扫描仪激光等设备执行的任何活动的数据质量。本文介绍了使用分数阶PID(比例-积分-微分)控制器稳定振荡的主动系统的建模和仿真。提出了一种用于调节闭环动态系统的分数阶PID的调节方法。进行了基于仿真的实验,以比较带分数阶和整数阶PID控制器的主动稳定系统的性能。常见的激励函数用于评估主动稳定系统的性能,以及通过拖拉机实施套件的现场试验获得的一些常见的振动干扰。结果表明,主动稳定系统具有更好的性能,通过带有分数PID控制器的闭环系统可减轻振动位移和加速度。另外,数值结果证实了与传统的PID系统相比,基于分数控制器的系统在衰减机械干扰方面的优越能力,适用于不同的机械运行条件,例如前进速度和负载。 (C)2016 Elsevier B.V.保留所有权利。

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