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Controlling the Welding Process in Robotic Te chnological Complexes by the Criterion of Product Quality

https://doi.org/10.17587/mau.20.29-33

Abstract

The solution of the problem of controlling the arc welding process by robotic technological complexes by the quality criterion of the produced products is proposed in this paper. The statement of the problem is given, the criterion of the quality in the form of the goal function is described. The mathematical models based on the principles of J. Forrester’s system dynamics is developed. The main indicators that affect the quality of the welding process in RTC and their relationships are identified as system levels. The external factors that depend on the indicators and affect them are also defined. The functional dependencies of the indicators were obtained as a result of approximation of statistical data based on long-term observations of the process. A system of the differential equations that describe the cause-effect relationships between the indicators and the factors is developed. Based on the mathematical model, an algorithm for the search for control actions, the implementation of which minimizes the goal function was developed. The developed models and the control algorithms might significantly improve the quality of the arc welding process. The proposed software is testing as a part of the RTC Kawasaki technical control system at OJSC "Transmash" (Engels, Russia).

About the Authors

A. F. Rezchikov
Institute of Precision Mechanics and Control of RAS.
Russian Federation
D. Sc., Corresponding Member  of the RAS.


V. A. Kushnikov
Institute of Precision Mechanics and Control of RAS.
Russian Federation
D. Sc., Professor.


V. A. Ivaschenko
Institute of Precision Mechanics and Control of RAS.
Russian Federation
D. Sc., Senior Scientifi c Employee.


D. S. Fominykh
Institute of Precision Mechanics and Control of RAS.
Russian Federation
PhD.


A. S. Bogomolov
Institute of Precision Mechanics and Control of RAS.
Russian Federation
PhD, Associate Professor.


L. Yu. Filimonyuk
Institute of Precision Mechanics and Control of RAS.
Russian Federation
Associate Professor.


References

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2. Fominykh D. S., Kushnikov V. A. Models and algorithms for searching of critical combinations of events during welding in robotic complexes, Proceedings of ХХX International Scientific Conference "Mathematical Methods in Technique and Technology — MMTT, 2017, vol. 6, pp. 18—23 (in Russian).

3. Rezchikov A. F., Kushnikov V. A., Ivashchenko V. A., Fominykh D. S., Bogomolov A. S., Filimonyuk L. Yu. Minimizing the damage from technological process violation in robotic technological welding complexes, Mekhatronika, Avtomatizatsiya, Upravlenie, 2017, no. 5, pp. 328—332 (in Russian).

4. Rezchikov A. F., Kushnikov V. A., Ivashchenko V. A., Fominykh D. S., Bogomolov A. S., Filimonyuk L. Yu. Prevention of critical events combination in robotic welding, Journal of machinery manufacture and reliability, 2017, vol. 46, no. 4, pp. 370—379.

5. Rezchikov A. F., Kushnikov V. A., Ivashchenko V. A., Fominykh D. S., Bogomolov A. S., Filimonyuk L. Yu. Prevention of emergency situations in the welding process in robotiс technological complexes, Proceedings of Voronezh State University. Series: systems analysis and information technologies, 2017, no. 4, pp. 46—55 (in Russian).

6. Rezchikov A. F., Kushnikov V. A., Ivashchenko V. A., Fominykh D. S., Bogomolov A. S., Filimonyuk L. Yu. Welding process control in robotic technological complexes by the product quality criterion under the risk conditions of unstable states occurrence, Control Systems and Informational Technologies, 2017, vol. 69, no. 3, pp. 65—72 (in Russian).

7. Forrester J. W. Industrial Dynamics, MIT Press, Cambridge, Mass, 1961

8. Rezchikov A. F., Kushnikov V. A., Ivashchenko V. A., Fominykh D. S., Bogomolov A. S., Filimonyuk L. Yu. Control of arc welding process in robotic technologcal complexes based on system dynamics model, Large-scale systems control, 2018, iss. 71, pp. 98—122 (in Russian).

9. Yandybaeva N. V., Kushnikov V. A. Mathematical model for the prediction of performance of higher school accreditation, Large-scale systems control, 2013, iss. 41, pp. 314—343 (in Russian).


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For citations:


Rezchikov A.F., Kushnikov V.A., Ivaschenko V.A., Fominykh D.S., Bogomolov A.S., Filimonyuk L.Yu. Controlling the Welding Process in Robotic Te chnological Complexes by the Criterion of Product Quality. Mekhatronika, Avtomatizatsiya, Upravlenie. 2019;20(1):29-33. https://doi.org/10.17587/mau.20.29-33

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ISSN 1684-6427 (Print)
ISSN 2619-1253 (Online)