高频柔性模式直线电机的自适应鲁棒精确运动控制

Zheng Chen, B. Yao, Qingfeng Wang
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引用次数: 3

摘要

本文研究了存在参数变化、扰动和各种显著非线性效应的直线电机的精密运动控制问题。提出了一种综合补偿库仑摩擦、齿槽力和非线性电磁场效应等主要非线性的自适应鲁棒控制算法。本文从实验上明确地识别了直线电机的高频结构柔性模态和动力学特性,并对其影响进行了细致的研究。利用这些高频动力学的知识,随后进行理论分析,以产生一套实际有用的指导方针,以调整控制器增益,在实践中最大限度地提高可实现的性能。采用不同的控制器增益对所提出的电弧控制律进行了对比实验,以说明所生成准则的有效性。此外,为了进一步提高可实现的控制性能,还研究了利用极零抵消对已知高频柔性模态和动力学进行显式补偿的方法,并通过对比实验结果对其有效性进行了评价。
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Adaptive robust precision motion control of linear motors with high frequency flexible modes
This paper studies precision motion control of linear motors in the presence of parameter variations, disturbances and various significant nonlinearity effects. An adaptive robust control (ARC) algorithm with integrated compensation of major nonlinearities ranging from Coulomb friction and cogging force to the nonlinear electromagnetic field effect is developed. High frequency structural flexible modes and dynamics in linear motors, which are neglected in the previous researches, are explicitly identified experimentally and their effects are carefully examined. With the knowledge of those high frequency dynamics, theoretical analysis is subsequently conducted to generate a set of practically useful guidelines on the tuning of controller gains in maximizing the achievable performance in practice. Comparative experiments of the propose ARC control law with different controller gains are carried out to illustrate the usefulness of the generated guidelines. In addition, to further push the achievable control performance, explicit compensation of the known high-frequency flexible modes and dynamics using pole/zero cancelation is also investigated, and its effectiveness is evaluated through comparative experimental results as well.
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