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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Perfectly Matched Feedback Control and Its Integrated Design for Multiaxis Motion Systems
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Perfectly Matched Feedback Control and Its Integrated Design for Multiaxis Motion Systems

机译:多轴运动系统的完美匹配反馈控制及其集成设计

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摘要

For motion systems with multiple axes, the approach of matched direct current gains has been generally adopted to improve contouring accuracy under low-speed operations. To achieve high-speed and high-precision motion in modern manufacturing, a perfectly matched feedback control (PMFBC) design for multiaxis motion systems is proposed in this paper. By applying stable pole-zero cancellation and including complementary zeros for uncancelled zeros for all axes, matched dynamic responses across the whole frequency range for all axes are achieved. Thus, contouring accuracy for multiaxis systems is guaranteed for the basic feedback loops. In real applications, the modeling error is unavoidable and the degradation and limitations of the model-based PMFBC exist. Therefore, a newly designed digital disturbance observer is proposed to be included in the proposed PMFBC structure for each axis to compensate for undesirable nonlinearity and disturbances to maintain the matched dynamics among all axes for the PMFBC design. Furthermore, the feedforward control loops zero phase error tracking controller are employed to reduce tracking errors. Experimental results on a three-axis CNC machining center indicate that both contouring accuracy and tracking accuracy are achieved by applying the present PMFBC design.
机译:对于多轴运动系统,通常采用匹配直流增益的方法来提高低速操作下的轮廓精度。为了实现现代制造业中的高速和高精度运动,本文提出了一种用于多轴运动系统的完美匹配的反馈控制(PMFBC)设计。通过应用稳定的零极点消除并为所有轴的未取消零点包括互补零点,可以在所有轴的整个频率范围内实现匹配的动态响应。因此,基本反馈回路可确保多轴系统的轮廓精度。在实际应用中,建模误差是不可避免的,并且存在基于模型的PMFBC的退化和局限性。因此,提出了一种新设计的数字扰动观测器,用于每个轴的拟议PMFBC结构中,以补偿非期望的非线性和扰动,以保持PMFBC设计在所有轴之间的匹配动态。此外,采用前馈控制回路零相位误差跟踪控制器来减小跟踪误差。在三轴CNC加工中心上的实验结果表明,通过应用当前的PMFBC设计,可以达到轮廓精度和跟踪精度。

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