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首页> 外文期刊>Mechatronics, IEEE/ASME Transactions on >A Direct Method of Adaptive FIR Input Shaping for Motion Control With Zero Residual Vibration
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A Direct Method of Adaptive FIR Input Shaping for Motion Control With Zero Residual Vibration

机译:具有零残余振动的运动控制的自适应FIR输入整形的直接方法

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摘要

In this paper, we describe a method of adaptive feedforward control that can achieve zero residual vibration in rest-to-rest motion of a vibratory system. When a finite impulse response filter is used to preshape a command input, zero residual vibration is achieved for any input signal if the impulse response of the filter satisfies a condition of orthogonality with respect to the impulse response of the system under control. An equivalent condition involving sets of measured I/O data is derived that forms the basis of a direct method of adaptively tuning filter coefficients during motion. The approach requires no prior model of the system and can be applied to multimode and multiinput systems under arbitrary and nonrepetitive motions. Versions of the algorithm employing recursive least-squares techniques are developed and analyzed. As a special case of the general adaptation problem, tuning of impulse-based shapers with fixed impulse timings can also be achieved. An experimental implementation on a two-link rigid-flexible manipulator is presented. The method is thereby shown to be realizable and effective for real-world motion control problems.
机译:在本文中,我们描述了一种自适应前馈控制方法,该方法可在振动系统的静止运动中实现零残留振动。当使用有限脉冲响应滤波器对命令输入进行整形时,如果滤波器的脉冲响应满足相对于受控制系统的脉冲响应正交的条件,则对于任何输入信号都将实现零残留振动。推导涉及一组测量的I / O数据的等效条件,该条件构成了在运动过程中自适应调整滤波器系数的直接方法的基础。该方法不需要系统的先验模型,并且可以在任意和非重复运动下应用于多模式和多输入系统。开发和分析了采用递归最小二乘技术的算法版本。作为一般适应问题的特例,还可以实现具有固定脉冲定时的基于脉冲的整形器的调整。提出了在两连杆刚柔机械臂上的实验实现。因此,该方法对于现实世界中的运动控制问题而言是可实现的和有效的。

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