A Multi-degree-of-freedom Orientation Measurement Methodology with Laser Detection

被引:2
作者
Yan, Liang [1 ]
Chen, I-Ming [1 ]
Guo, Zhongwei [2 ]
Lang, Yan [2 ]
Yang, Guilin [3 ]
Li, Yunhua [2 ]
Lim, Chee Kian [1 ]
机构
[1] Nanyang Technol Univ, Sch Mech & Aerosp Engn, Singapore 637098, Singapore
[2] Beihang Univ, Sch Automat Sci & Elect Engn, Beijing 100083, Peoples R China
[3] Singapore Inst Mfg Technol, Mechatron Grp, Singapore 638075, Singapore
来源
2009 IEEE/ASME INTERNATIONAL CONFERENCE ON ADVANCED INTELLIGENT MECHATRONICS, VOLS 1-3 | 2009年
关键词
Sensor; Laser measurements; Displacement measurement; Rotating bodies; Motion measurement; SENSOR; DESIGN;
D O I
10.1109/AIM.2009.5229965
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
The advance of robotics, actuators and manufacturing technology motivates the research on measurement of multiple degree-of-freedom (DOE) rotational motions. A novel laser-based high-precision spherical displacement sensing methodology has been proposed in this paper. The laser detector is utilized to measure the distance from the target to the detector itself on several light spots, and thus to calculate the rotation angle of the rigid body in three directions. As there is no physical contact between the laser detector and the moving rigid body, additional mass/moment inertial and friction exerted on the rotor can be avoided, and thus the working efficiency of the moving part can be improved. The algorithm of orientation angles has been derived. Experimental apparatus has been developed to evaluate the working performance of proposed 3-DOF laser-based measurement methodology. The comparison between experimental and analytical results shows that the laser-based orientation measurement method can achieve high-precision performance. The measurement precision and speed of the the laser-based angular displacement measurement method can be improve further by increasing the slot density on the rigid body and using new models of laser detectors.
引用
收藏
页码:487 / +
页数:2
相关论文
共 50 条
[21]   Addressing Simplicity, Dexterity and Usability of Compact, Multi-Degree-of-Freedom Mechatronic Devices [J].
Dalli, Donald ;
Saliba, Michael A. .
2016 IEEE INTERNATIONAL CONFERENCE ON ADVANCED INTELLIGENT MECHATRONICS (AIM), 2016, :1357-1362
[22]   A review of recent advances in the single- and multi-degree-of-freedom ultrasonic piezoelectric motors [J].
Ryndzionek, Roland ;
Sienkiewicz, Lukasz .
ULTRASONICS, 2021, 116
[23]   Linear multi-degree-of-freedom low-frequency piezoelectric vibration energy harvester [J].
Wang, Yanfen ;
Luo, Cuixian ;
Li, Pengwei .
FERROELECTRICS, 2016, 502 (01) :57-68
[24]   Response Estimation of Multi-Degree-of-Freedom Nonlinear Stochastic Structural Systems through Metamodeling [J].
Li, Bowei ;
Chuang, Wei-Chu ;
Spence, Seymour M. J. .
JOURNAL OF ENGINEERING MECHANICS, 2021, 147 (11)
[25]   Analysis of flow field characteristics of multi-degree-of-freedom motor with air-floatation [J].
Li, Zheng ;
Xing, Xuanxuan ;
Wang, Xueting ;
Du, Shenhui ;
Sun, Hexu .
ADVANCES IN MECHANICAL ENGINEERING, 2021, 13 (04)
[26]   Response of a multi-degree-of-freedom system with a pounding vibration neutralizer to harmonic and random excitation [J].
Masri, Sami F. ;
Caffrey, John P. .
JOURNAL OF SOUND AND VIBRATION, 2020, 481
[27]   A NOVEL MULTI-DEGREE-OF-FREEDOM ULTRASONIC MOTOR WITH A COMPOSITE RING-SHAPED STATOR [J].
Pan, Zhi-yong ;
Yang, Ying ;
Qiu, Jian-min ;
Wei-Wu ;
Wang, Liang ;
Jin, Jia-mei .
2022 16TH SYMPOSIUM ON PIEZOELECTRICITY, ACOUSTIC WAVES, AND DEVICE APPLICATIONS, SPAWDA, 2022, :42-46
[28]   Traveling Wave Type Multi-Degree-of-Freedom Spherical Ultrasonic Motor with Built-in Stators [J].
Li, Zheng ;
Zhao, Liang ;
Wang, Zhe ;
Guo, Peng .
JOURNAL OF ELECTRICAL ENGINEERING & TECHNOLOGY, 2020, 15 (04) :1723-1733
[29]   Parametric Characteristics and Bifurcation Analysis of Multi-Degree-of-Freedom Micro Gyroscope with Drive Stiffness Nonlinearity [J].
Han, Mingjiang ;
Zhang, Qichang ;
Hao, Shuying ;
Li, Weixiong .
MICROMACHINES, 2019, 10 (09)
[30]   Wireless power transmission for multi-degree-of-freedom motor applications based on magnetic field coupling [J].
Li, Zheng ;
Gao, Shihao ;
Zhang, Hanming .
IEICE ELECTRONICS EXPRESS, 2019, 16 (13)