Autonomous Space Navigation Using Nonlinear Filters with MEMS Technology

Author(s):  
Seid H. Pourtakdoust ◽  
Maryam Kiani
2013 ◽  
Vol 133 (5) ◽  
pp. 139-146
Author(s):  
Takaaki Suzuki ◽  
Kyohei Terao ◽  
Hiroyuki Suzuki ◽  
Yuki Nitta ◽  
Hidekuni Takao ◽  
...  

Equipment ◽  
2006 ◽  
Author(s):  
K. Fushinobu ◽  
D. Takahashi ◽  
T. Miura ◽  
Ken Okazaki
Keyword(s):  

2008 ◽  
Vol 67 (14) ◽  
pp. 1247-1267
Author(s):  
V. V. Lukin ◽  
S. Peltonen ◽  
P. Ye. Yeltsov ◽  
S. K. Abramov ◽  
A. N. Besedin ◽  
...  

ROBOT ◽  
2011 ◽  
Vol 33 (3) ◽  
pp. 366-370 ◽  
Author(s):  
Pengcheng CHI ◽  
Weiping ZHANG ◽  
Wenyuan CHEN ◽  
Hongyi LI ◽  
Kun MENG ◽  
...  

Micromachines ◽  
2021 ◽  
Vol 12 (1) ◽  
pp. 69
Author(s):  
Yong Hua ◽  
Shuangyuan Wang ◽  
Bingchu Li ◽  
Guozhen Bai ◽  
Pengju Zhang

Micromirrors based on micro-electro-mechanical systems (MEMS) technology are widely employed in different areas, such as optical switching and medical scan imaging. As the key component of MEMS LiDAR, electromagnetic MEMS torsional micromirrors have the advantages of small size, a simple structure, and low energy consumption. However, MEMS micromirrors face severe disturbances due to vehicular vibrations in realistic use situations. The paper deals with the precise motion control of MEMS micromirrors, considering external vibration. A dynamic model of MEMS micromirrors, considering the coupling between vibration and torsion, is proposed. The coefficients in the dynamic model were identified using the experimental method. A feedforward sliding mode control method (FSMC) is proposed in this paper. By establishing the dynamic coupling model of electromagnetic MEMS torsional micromirrors, the proposed FSMC is evaluated considering external vibrations, and compared with conventional proportion-integral-derivative (PID) controls in terms of robustness and accuracy. The simulation experiment results indicate that the FSMC controller has certain advantages over a PID controller. This paper revealed the coupling dynamic of MEMS micromirrors, which could be used for a dynamic analysis and a control algorithm design for MEMS micromirrors.


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