The position servo system based on dSPACE
Xuejuan Shao, Zhang Jinggang, Zhicheng Zhao
Abstract
Xuejuan Shao, Zhang Jinggang, Zhicheng Zhao
Abstract
The dSPACE is a software and hardware real-time control platform based on MATLAB/Simulink. In this paper, the proportional-integral defferential(PID) position regulator of the servo system is designed and dSPACE single board system DS1103 is used. Adoption of the rapid control prototyping, the control system's simulation model is built in MATLAB/Simulink. The model can be compiled and downloaded to dSPACE real-time hardware system by RTW/RTI. The deviation of servo system movement process can be monitored and the controller parameters can be adjusted online to improve the system's performance with ControlDesk software. The real-time simulation shows that the proposed regulator enables the system to be of excellent follow performances and the method of real-time simulation is simple and the parameters can be revised conveniently.
OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
The dSPACE is a software and hardware real-time control platform based on MATLAB/Simulink. In this paper, the proportional-integral defferential(PID) position regulator of the servo system is designed and dSPACE single board system DS1103 is used. Adoption of the rapid control prototyping, the control system's simulation model is built in MATLAB/Simulink. The model can be compiled and downloaded to dSPACE real-time hardware system by RTW/RTI. The deviation of servo system movement process can be monitored and the controller parameters can be adjusted online to improve the system's performance with ControlDesk software. The real-time simulation shows that the proposed regulator enables the system to be of excellent follow performances and the method of real-time simulation is simple and the parameters can be revised conveniently.
Key concepts: DSPACE, MATLAB, PID controller, Control engineering, Computer science, Software, Servomechanism, Controller (irrigation)