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音圈电机稳速系统及图形化调试界面设计 被引量:1

Design of Graphic Debug Interface and Speed Control Based on VCM
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摘要 传统像面扫描系统通常由旋转电机驱动,转动变平动,存在中间传动环节,引入摩擦、间隙、机械形变等问题,破坏系统高速运行时的稳定性。文章设计了由音圈电机驱动的像面扫描系统,具有无滞后、高响应、高加速度、高速度、控制方便等优点,实现了高精度往复运动,获得了高质量图像。在调试像面扫描控制器参数的过程中,开发了基于Labview和GEL语言的图形化调试界面,缩短了开发周期,可以推广到其他电机控制调试系统中。 The traditional image scanning system is usually driven by a rotary motor,which transforms rotary motion into translational motion.There is transmission links,as a result,friction,clearance,mechanical deformation were introduced,the stability of the system during high-speed was undermined.In order to achieve high-precision reciprocating movement and obtain high-quality images,the image scanning system which was driven by the voice coil motor was designed,with the advantage of no lag,high response,high acceleration,high speed,easy to control,etc.During debugging the parameters of scanning controller,the graphical debugging interface based on Labview and GEL language was developed,shorten the development cycle,which can also be extended to other motor control debugging system.
出处 《液晶与显示》 CAS CSCD 北大核心 2010年第1期149-153,共5页 Chinese Journal of Liquid Crystals and Displays
基金 中国科学院长春光学精密机械与物理研究所创新工程资助项目(No.ZJ99130B) 中国科学院知识创新工程领域前沿项目资助(No.O70Y32R070)
关键词 LABVIEW GEL 音圈电机 像面扫描 控制 高频扫描 Labview GEL VCM image scanning control high-frequency scanning
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