DocumentCode :
49211
Title :
The Development of a High-Speed Segment Erecting System for Shield Tunneling Machine
Author :
Lintao Wang ; Guofang Gong ; Huayong Yang ; Xu Yang ; Dianqing Hou
Author_Institution :
State Key Lab. of Fluid Power Transm. & Control, Zhejiang Univ., Hangzhou, China
Volume :
18
Issue :
6
fYear :
2013
fDate :
Dec. 2013
Firstpage :
1713
Lastpage :
1723
Abstract :
The present study is focused on developing an effective high-speed segment erecting system, which is specific for modern shield tunneling machine. The big steady-state error and large impact force caused by high motion speed and large inertia load are main restrictions for the conventional segment erector to realize high-speed segment erecting. To overcome the bottleneck, a new hydraulic system that is based on electrohydraulic proportional control technology is designed, the actuator speed of which is adjustable and controllable. The kinematic and dynamic models are established to determine the displacement of each actuator and calculate joint force, respectively. A combined motion law is then selected to reduce joint force during acceleration and deceleration stages. Furthermore, a superior control strategy that is able to precisely and smoothly control the segment erector at high speed is chosen by comparing the experimental performances of four different control strategies. Experiments are carried out on a segment erector test rig. The experimental results show exceptional performances of the speed and position compound control system in terms of accuracy and impact force. The maximum rotation speed of the new system can be increased to more than three times of that of the present erecting system. In addition, high steady-state accuracy can be achieved with the new system while its impact force is just about one-third of the position control system.
Keywords :
construction equipment; electrohydraulic control equipment; hydraulic systems; proportional control; tunnels; velocity control; acceleration stages; actuator speed; combined motion law; deceleration stages; dynamic models; electrohydraulic proportional control technology; high motion speed; high speed control; high-speed segment erecting system; hydraulic system; joint force reduction; kinematic models; large inertia load; maximum rotation speed; position compound control system; segment erector test rig; shield tunneling machine; steady-state error; superior control strategy; Control systems; Electrohydraulics; Kinematics; Position control; Steady-state; Tunneling; Electrohydraulic control; segment erector; shield tunneling machine; speed and position compound control;
fLanguage :
English
Journal_Title :
Mechatronics, IEEE/ASME Transactions on
Publisher :
ieee
ISSN :
1083-4435
Type :
jour
DOI :
10.1109/TMECH.2013.2282873
Filename :
6631464
Link To Document :
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