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Frequency Response Analysis Of Macro-Micro Stages With Active Disturbance Reject Controller

Volume 9: 15th IEEE/ASME International Conference on Mechatronic and Embedded Systems and Applications(2020)

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摘要
Under the disturbance of friction and the elastic deformation of motion stage, the positioning accuracy of traditional mechanical bearing high speed direct-drive motion stage can only reach the micron level, which is difficult to meet the requirement ofhigher speedprecision positioning. Therefore, the macro -micro stages utilize the flexure hinges to compensate for displacement in the friction dead zone. However, due to the nonlinear elastic vibration oftheflexure hinge during the action, the settling time of micro-plafform is different with stiffnesses. Effect analysis of different stiffness on the settling time of the micro-platform is significantfor the platform design. According to the motion characteristics of the macro-micro stages, this paper designs the cascade extended state observer (ESO) to estimate and compensate for the disturbance and combine the proportional derivative (PD) controller as the active disturbance rejection control (ADRC) strategy of the micro platform position loop. Through thefrequency response analysis of the control system, the influence of different stiffness on the settling time of microplatform is explored. The simulation results show that the ADRC strategy based on cascade ESO has better robustness, and the macro -micro stages have a shorter settling time when theflexure hinge have smaller stiffness during the positioning phase.
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关键词
Macro-micro stages, Active Disturbance Rejection Control(ADRC), Frequency Response Analysis, extended state observer
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