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Research methods of simulate digital compensators and autonomous control systems

https://doi.org/10.20914/2310-1202-2016-4-67-77

Abstract

The peculiarity of the present stage of development of the production is the need to control and regulate a large number of process parameters, the mutual influence on each other that when using single-circuit systems significantly reduces the quality of the transition process, resulting in significant costs of raw materials and energy, reduce the quality of the products. Using a stand-alone digital control system eliminates the correlation of technological parameters, to give the system the desired dynamic and static properties, improve the quality of regulation. However, the complexity of the configuration and implementation of procedures (modeling) compensators autonomous systems of this type, associated with the need to perform a significant amount of complex analytic transformation significantly limit the scope of their application. In this regard, the approach based on the decompo sition proposed methods of calculation and simulation (realization), consisting in submitting elements autonomous control part digital control system in a series parallel connection. The above theoretical study carried out in a general way for any dimension systems. The results of computational experiments, obtained during the simulation of the four autonomous control systems, comparative analysis and conclusions on the effectiveness of the use of each of the methods. The results obtained can be used in the development of multi-dimensional process control systems.

About the Authors

V. S. Kudryashov
Voronezh state university of engineering technologies
Russian Federation

doctor of technical sciences, professor, information and control systems department, 

Revolution Av., 19, Voronezh, 394036



S. V. Ryazantsev
Voronezh state university of engineering technologies
Russian Federation

candidate of technical sciences, assistant professor, information and control systems department, 

Revolution Av., 19, Voronezh, 394036



I. A. Kozenko
Voronezh state university of engineering technologies
Russian Federation

candidate of technical sciences, senior lecturer, information and control systems department, 

Revolution Av., 19, Voronezh, 394036



E. A. Khromykh
Voronezh state university of engineering technologies
Russian Federation

candidate of technical sciences, associate professor, informations security department, 

Revolution Av., 19, Voronezh



References

1. 1 Kudryashov V.S., Ryazantsev S.V., Ivanov A.V., Kozenko I.A. The method of automated synthesis of the structure of the transfer functions of autonomous compensators multiply digital control. Vestnik VGTA [Proceedings of Voronezh State Technological Academy. Series: Information Technologies, Simulation and Control] 2011, no. 2, pp.16-20. (in Russian)

2. 2 Kudryashov V.S., Ryazanzev S.V., Kozenko I.A. Method of modeling and implementation a multiply autonomous-invariant digital control systems. Vestnik TGTU [Proceedings of Tambov State Technical University] 2012, no. 2, vol. 8, pp. 350-360. (in Russian)

3. 3 Kudryashov V.S., Ryazantsev S.V., Ivanov A.V., Sviridov D.A. Synthesis correction contour digital control system of low sensitivity. Vestnik VGUIT [Proceedings of Voronezh State University of Engineering Technology] 2012, no. 3, pp. 65-69. (in Russian)

4. 4 Haddad W.M., Nersesov S.G. Stability and Control of Large-Scale Dynamical Systems. Princeton University Press, 2011, pp. 389.

5. 5 Wang Q.-G., Nie Z.-Y. PID Control for MIMO Processes. PID Control in the Third Millennium, Advances in Industrial Control. London: Springer, 2012, pp. 177-204.


Review

For citations:


Kudryashov V.S., Ryazantsev S.V., Kozenko I.A., Khromykh E.A. Research methods of simulate digital compensators and autonomous control systems. Proceedings of the Voronezh State University of Engineering Technologies. 2016;(4):67-77. (In Russ.) https://doi.org/10.20914/2310-1202-2016-4-67-77

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ISSN 2226-910X (Print)
ISSN 2310-1202 (Online)