Design of Precision Positioning Stage Driven by Voice Coil Motor with Integrated Active Eddy Current Damper

Na Sang, Chi Zhang, Xiaolu Huang, Hongtao Yu, Weizhen Wang, Guilin Yang
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Abstract

A flexure-based precision positioning stage driven by voice coil motor (VCM) with integrated active eddy current damper (ECD) is proposed in this paper. This device is constituted of two identical VCMs, one ECD and one compound double parallelogram mechanism (CDPM). The VCM with Halbach permanent magnets (PMs) array is designed to yield a large driving force and low force ripple. The CDPM is selected as the flexure guide with the advantages of deterministic motion and high precision displacement transmission. The double-sided active ECD is proposed to suppress the residual vibration especially in the deceleration or stop motion process. Based on the analytical models and theoretical analyses of the VCM, the ECD and the flexure guide, the relationship between the input driving current and output displacement is obtained. Finite element analysis (FEA) is carried out to verify both the electromagnetic and dynamic performance of the designed stage. The results validate that the proposed stage can achieve a large motion range about $\boldsymbol{\pm 5\text{mm}}$, deliver the force-constant variation less than 2%, and possess a high bandwidth approximately 55Hz.
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集成有源涡流阻尼器音圈电机驱动的精密定位级设计
提出了一种集成有源涡流阻尼器(ECD)的音圈电机驱动柔性精密定位平台。该装置由两个相同的vcm组成,一个ECD和一个复合双平行四边形机构(CDPM)。具有Halbach永磁体(pm)阵列的VCM设计用于产生大的驱动力和低的力脉动。选择CDPM作为柔性导轨,具有运动确定性和位移传递精度高的优点。提出了双面主动ECD,以抑制减速或停止过程中的残余振动。通过对VCM、ECD和挠性导轨的解析模型和理论分析,得到了输入驱动电流与输出位移的关系。对设计平台的电磁性能和动力性能进行了有限元分析。结果表明,该平台可以实现约$\boldsymbol{\pm 5\text{mm}}$的大运动范围,力常数变化小于2%,并具有约55Hz的高带宽。
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