DocumentCode :
1429564
Title :
Design of a Distributed Multiaxis Motion Control System Using the IEEE-1394 Bus
Author :
Gu, GuoYing ; Zhu, LiMin ; Xiong, Zhenhua ; Ding, Han
Author_Institution :
State Key Lab. of Mech. Syst. & Vibration, Shanghai Jiao Tong Univ., Shanghai, China
Volume :
57
Issue :
12
fYear :
2010
Firstpage :
4209
Lastpage :
4218
Abstract :
This paper presents a distributed multiaxis motion control system based on the IEEE-1394 bus. In the system design, the Unified Modeling Language is employed to illustrate interactions of the objects required in the system. The developed system consists of a set of smart distributed control nodes connected one by one through the IEEE-1394 bus. Each smart node contains four modules, i.e., an IEEE-1394 interface module, a digital signal processor module, a field-programmable gate array module, and a digital-to-analog converter module. It accomplishes its own control task and coordinates with the others through information exchanges, sampling sensor signals, and controlling actuators. A scheduled communication protocol is proposed according to the criteria in terms of bounded time delay and guaranteed transmission. Time delays arising from data processing and message transmission are analyzed. A platform is built, and experiments are conducted to demonstrate the capabilities of the developed distributed control system for real-time communication and synchronous tracking control, which are required for multiaxis applications. The results verify the feasible application of the IEEE-1394 bus to distributed motion control.
Keywords :
Unified Modeling Language; control engineering computing; delays; motion control; real-time systems; system buses; IEEE-1394 bus; bounded time delay; controlling actuators; data processing; digital signal processor module; digital-to-analog converter module; distributed multiaxis motion control system; field programmable gate array module; message transmission; real-time communication; sampling sensor signals; scheduled communication protocol; smart distributed control nodes; synchronous tracking control; unified modeling language; Actuators; Communication system control; Delay effects; Digital signal processing; Distributed control; Field programmable gate arrays; Intelligent sensors; Motion control; Signal sampling; Unified modeling language; Distributed control system; IEEE 1394; real-time communication; smart motion control node; synchronous servo control;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2010.2044127
Filename :
5422768
Link To Document :
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