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Analysis and rejection of angular position-based disturbances for PMSM-actuated testing table systems

机译:PMSM驱动的测试台系统基于角位置的干扰的分析和排除

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High-precise testing table is a typical continuously rotating mechanism which is used to test and calibrate inertial components. High operation smoothness is a significant index associated to these kinds of equipments, which is influenced mostly by the external disturbances acting on the systems. In this paper, the disturbances existing in the system are investigated by experiments, and the characteristic of the disturbances is analyzed using frequency spectrum analysis tools, both in time domain and spatial domain. Accordingly angular position-based repetitive controller is presented to reject these kinds of disturbances in sense of time sampling. Comparisons and simulation results are presented to illustrate the effectiveness of the control design.
机译:高精度测试台是一种典型的连续旋转机构,用于测试和校准惯性组件。较高的运行平稳性是与此类设备相关的重要指标,这主要受作用于系统的外部干扰的影响。本文通过实验研究了系统中存在的干扰,并使用频谱分析工具在时域和空间域上分析了干扰的特征。因此,提出了基于角度位置的重复控制器,以在时间采样的意义上拒绝这些类型的干扰。通过比较和仿真结果来说明控制设计的有效性。

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