Sliding mode control of a servo system in LabVIEW: Comparing different control methods

Author:

Kiss János Máté1,Szemes Péter Tamás1ORCID,Aradi Petra2

Affiliation:

1. 1Department of Mechatronics, Faculty of Engineering, University of Debrecen, Debrecen, Hungary

2. 2Department of Mechatronics, Optics, and Mechanical Engineering Informatics, Faculty of Mechanical Engineering, Budapest University of Technology and Economics, Budapest, Hungary

Abstract

AbstractThe main contribution of this paper is to present the efficiency of LabVIEW in simulating and controlling a servo system with conventional methods (PI and PID control), as well as sliding mode control (SMC). The control of an actual system with LabVIEW and NI hardware provides an efficient implementation platform, using both LabVIEW’s graphical programming and the text-based m-file language MathScript RT. Both programming environments and the connection to NI hardware are relatively easy to use, therefore, ideal for education. The graphical “coding” can help novice users to see through their algorithms. However, the mathematical background of sliding mode control is difficult compared to conventional PID control; the SMC implementation for practical uses can be quite simple, as the presented example demonstrates. The first didactic step is a simulation with the Control Design and Simulation, as well as MathScript RT Modules. Then a myRIO Student Embedded Device is used to control a real servo system. LabVIEW code can be compiled to run on computers, (soft) real-time targets, and FPGAs (hard real-time targets), so students can easily and quickly step up to real industrial measurement and control problems without the need to learn new programming environments.

Publisher

Akademiai Kiado Zrt.

Subject

Management Science and Operations Research,General Engineering,Materials Science (miscellaneous),Information Systems,Environmental Engineering

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Speed Control of DC Motor Using Sliding Mode Controller Tuned by Genetic Algorithm;2023 10th IEEE International Conference on Power Systems (ICPS);2023-12-13

2. Sliding Mode Control of Angular Speed DC Motor System with Parameter Uncertainty;2022 IEEE International Conference on Communication, Networks and Satellite (COMNETSAT);2022-11-03

3. IT development of a web-based laboratory system for mechatronical engineering students;2022 IEEE 9th International Conference on e-Learning in Industrial Electronics (ICELIE);2022-10-17

4. Internet Based Control of a Servo Motor with a Sliding Mode Based Observer for Chattering Reduction;2022 IEEE 20th International Power Electronics and Motion Control Conference (PEMC);2022-09-25

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