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国防科技大学机电控制及自动化学院机电工程研究所, 湖南长沙, 410073
收稿日期:2001-05-08,
修回日期:2001-05-14,
网络出版日期:2001-08-15,
纸质出版日期:2001-08-15
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郑子文, 李圣怡. 滚珠丝杠传动机构的微动特性及轨迹跟踪控制[J]. 光学精密工程, 2001,(4): 360-363
ZHENG Zi-wen, LI Sheng-yi. Ultra-precision positioning and tracking using ballscrew[J]. Editorial Office of Optics and Precision Engineering, 2001,(4): 360-363
滚珠丝杠传动的机床进给机构在微观运动条件下的各种非线性因素和进给系统较高的机械增益是影响机床运动的控制精度进一步提高的主要因素.本文研究了滚珠丝杠进给机构的微动特性
结果表明库仑摩擦和微弹性现象是滚珠丝杠在微动条件下的主要运动特性.针对这一特性
提出了一种基于误差的增益自适应控制器
该控制器能够有效地提高系统的稳定性
并能保证足够的控制精度.对幅值为1μm的正弦输入
其跟踪控制误差小于0.04μm.对幅值为1mm的正弦输入
其跟踪控制误差为0.5μm.
Ultra-precision machining requires high motion resolution. The nonlinear factors and stability are two ma-jor factors to be faced in designing ultra-precision controllers. The design of the machine motion controller is very important in ultra-precision machining. A ballscrew driving stage with resolution of 5 nm and the micro movement characteristics of this mechanism have been researched
respectively. The mechanism is a nonlinear system in micro movement condition. A controller named gain self-turning controller based on motion error (GSTCBE) is also pro-posed
which has been proved to be more stable than traditional PID controller. The controller is charaterized by higher tracking accuracy in micro and macro motion scope.
Fukada Shigeo. Ultra-precision positioning with nano-metric resolution using lead-screw mechanism[A].1′st International Conference and General Meeting of the European Society for Precision Engineering and Nano-technology[C]. Germany:1999.
Chen J S,Dwang I C. A ballscrew drive mechanism with piezo-electric nut for preload and motion control[J]. International Journal of Machine Tools & Manufacture, 2000,40: 513-526.
Park Chun Hong, Lee Eung Sook, Lee Husang. A review on research in ultra precision engineering at KIMM[J]. International Journal of Machine Tools & Manufacture, 1999,39: 1793-1805.
朱建中,李宁,李圣怡.同心圆光栅=自由度误差测量系统[J].光学精密工程,2000,8(1);91-95.
苏绍景,吕海宝,李圣怡,基于DSP的宽动态范围莫尔第纹计数与精密细分技术[J].光学精密工程,2001,9(2):146-150.
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