Proceedings of the 1st International Conference on Mechanical Engineering and Material Science (MEMS 2012)

Design and Realization of Control System of a Novel Digital Hydraulic 2-DOF Motion Platform

Authors
Xiong Xianfeng, Xing Jifeng, Peng Likun
Corresponding Author
Xiong Xianfeng
Available Online December 2012.
DOI
https://doi.org/10.2991/mems.2012.133How to use a DOI?
Keywords
2-DOF motion platform; Digital hydraulic valve; multi-thread;
Abstract
Motion platform is widely used to simulate the movement of ship and vehicle, which is of great value for testing of ship and vehicle equipment, motion simulator for training to steer. A novel digital hydraulic 2-DOF motion platform for simulating marine environment is developed, which include incremental stepping motor, four-edge slide spool valve, asymmetric hydraulic cylinder and structure of motion platform, as well as synchronous feedback mechanism. An all-digital control system of the motion platform is designed in accordance with its approximate open-loop control characteristics. The two degrees of freedom of movement of the motion platform can be controlled independently and multiple protection measures are designed to protect the motion platform. It has been proved that the control system not only can control the movement of the platform accurately, but also can provide the anti-interference ability and stable operation system.
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Volume Title
Proceedings of the 1st International Conference on Mechanical Engineering and Material Science (MEMS 2012)
Series
Advances in Intelligent Systems Research
Publication Date
December 2012
ISBN
978-90-78677-59-8
ISSN
1951-6851
DOI
https://doi.org/10.2991/mems.2012.133How to use a DOI?
Open Access
This is an open access article distributed under the CC BY-NC license.

Cite this article

TY  - CONF
AU  - Xiong Xianfeng
AU  - Xing Jifeng
AU  - Peng Likun
PY  - 2012/12
DA  - 2012/12
TI  - Design and Realization of Control System of a Novel Digital Hydraulic 2-DOF Motion Platform
BT  - Proceedings of the 1st International Conference on Mechanical Engineering and Material Science (MEMS 2012)
PB  - Atlantis Press
SP  - 505
EP  - 508
SN  - 1951-6851
UR  - https://doi.org/10.2991/mems.2012.133
DO  - https://doi.org/10.2991/mems.2012.133
ID  - Xianfeng2012/12
ER  -