Optical Technique, Volume. 49, Issue 4, 390(2023)
A novel nano accuracy positioning system based on feedback of heterodyne laser interferometry with non-coaxial beams
[1] [1] Chen W, Liu Y, Liu Y, et al. Design and experimental evaluation of a novel stepping linear piezoelectric actuator[J]. Sensors and Actuators A: Physical,2018,276:259-266.
[2] [2] Yuan Y, Zhang D, Jing X, et al. Fabrication of hierarchical freeform surfaces by 2D compliant vibration-assisted cutting[J]. International Journal of Mechanical Sciences,2019,152:454-464.
[3] [3] Li M, Liu L, Xi N, et al. Applications of micro/nano automation technology in detecting cancer cells for personalized medicine[J]. IEEE Transactions on Nanotechnology,2017,16(2):217-229.
[4] [4] Sun M, Huang W, Wang Y, et al. Research on a novel non-resonant piezoelectric linear motor with lever amplification mechanism[J]. Sensors and Actuators A:Physical,2017,261:302-310.
[5] [5] Wang F, Huo Z, Liang C, et al. A novel actuator-internal micro/nano positioning stage with an arch-shape bridge-type amplifier[J]. IEEE Transactions on Industrial Electronics,2018,66(12):9161-9172.
[6] [6] Liang C, Wang F, Huo Z, et al. A 2-DOF monolithic compliant rotation platform driven by piezoelectric actuators[J]. IEEE Transactions on Industrial Electronics,2019,67(8):6963-6974.
[7] [7] Tang H, Gao J, Chen X, et al. Development and repetitive-compensated PID control of a nanopositioning stage with large-stroke and decoupling property[J]. IEEE Transactions on industrial electronics,2017,65(5):3995-4005.
[8] [8] Zhu H, Teo T J, Pang C K. Magnetically levitated parallel actuated dual-stage (Maglev-PAD) system for six-axis precision positioning[J]. IEEE/ASME Transactions on Mechatronics,2019,24(4):1829-1838.
[9] [9] Zhong B, Zhu J, Jin Z, et al. A large thrust trans-scale precision positioning stage based on the inertial stick–slip driving[J]. Microsystem Technologies,2019,25(10):3713-3721.
[10] [10] Huang S D, Cao G Z, Xu J, et al. Predictive position control of long-stroke planar motors for high-precision positioning applications[J]. IEEE Transactions on Industrial Electronics,2020,68(1):796-811.
[11] [11] Zhu H, Pang C K, Teo T J. A flexure-based parallel actuation dual-stage system for large-stroke nanopositioning[J]. IEEE Transactions on Industrial Electronics,2017,64(7):5553-5563.
[12] [12] Nguyen V H, Kim W. Two-phase Lorentz coils and linear Halbach array for multiaxis precision-positioning stages with magnetic levitation[J]. IEEE/ASME Transactions on Mechatronics,2017,22(6):2662-2672.
[13] [13] Omairi A, Ismail Z H. Towards machine learning for error compensation in additive manufacturing[J]. Applied Sciences,2021,11(5):2375.
[14] [14] Li B, Li Y, Wang H, et al. Compensation of automatic weighing error of belt weigher based on BP neural network[J]. Measurement,2018,129:625-632.
Get Citation
Copy Citation Text
ZHANG Zhengyu, LIU Yuhan, LUO Jie, ZHAO Weiqian. A novel nano accuracy positioning system based on feedback of heterodyne laser interferometry with non-coaxial beams[J]. Optical Technique, 2023, 49(4): 390