DAC插补对高速线性执行器动力学特性的影响

F. Aggogeri, A. Borboni, S. Strano, M. Terzo
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引用次数: 1

摘要

本文以高速作动器为实验对象,研究了线性作动器的动力学特性。这些装置受到不同的不期望的动态现象,如由于有限刚度和与其他最终动态特性相关的非零惯性的共同存在而产生的振动。具体来说,本文关注的是与离散化相关的指令运动失真引起的振动,以及通过DAC(数模转换器)连续转换为连续函数。为了减少不期望的动态现象,不同的dac实现了插值算法。本文通过数值和实验分析了不同插值方法在时域内的效果。结果表明:增大样品尺寸可减小误差;截断影响样本维数上的渐近误差;只有当样本维数较低时,插值类型的效果才有意义。实验结果表明:随着样本量的减小,线性插值的测量加速度呈递增趋势;赫米特插值产生的测量加速度不依赖于样本量;贝塞尔插值产生的测量加速度最低。因此,可以根据具体问题的约束条件,采用最佳插补方法。
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Effects of DAC interpolation on the dynamics of a high speed linear actuator
This works deals on the dynamics of linear actuators with an experimental set on high speed actuators. These devices are subjected to different undesired dynamic phenomena such as vibrations due to the conjunct presence of finite stiffness and non-zero inertia associated to other eventual dynamical characteristics. Specifically, the attention of this paper is associated to vibrations due to command motion distortion associated to discretization and to successive conversion to a continuous function through DAC (Digital to Analog Converter). To reduce undesired dynamical phenomena, different DACs implement interpolation algorithms. This work analyzes numerically and experimentally the effects of different interpolation approaches in the time domain. Results show how: increasing sample dimension decreases error; truncation affects asymptotic error over the sample dimension; the effect of the type of interpolation is sensible only with a low sample dimension. Then experimental trials was realized showing that: linear interpolation exhibits an increment of measured acceleration with decreasing sample size; Hermite interpolation produced measured acceleration that does not depend on sample size; Bezier interpolation produced the lowest measured acceleration. Thus, the best interpolation method can be adopted, according with the constraints of the specific problem.
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