OPTIMIZATION OF DYNAMIC MODES OF A TECHNOLOGICAL LINE ASYNCHRONOUS ELECTRIC DRIVES COMPLEX

Authors

  • V.L. Kodkin South Ural State University, Chelyabinsk, Russian Federation
  • А.С. Anikin South Ural State University, Chelyabinsk, Russian Federation
  • A.A. Baldenkov South Ural State University, Chelyabinsk, Russian Federation
  • Jiang Yanmin China Petroleum University, Beijing, China
  • Huang Ji Chen North China Electric Power University, Baoding, China

DOI:

https://doi.org/10.14529/power180413

Keywords:

dynamic mode, positive feedback, control system, variable frequency drive, process line

Abstract

The paper researches and synthesizes a control system of an electric drive complex for a fiberboard painting line for the construction and furniture industries. The line is built based on variable frequency drives (VFD). To improve the quality of products, a uniform coloring and drying of sheets at all stages of the technological process was provided. As some of the line rolls were transferred to an individual drive and a positive feedback on the current of the stator in an VFD with sensorless control was introduced, the task of integrated control of electric drives of the color line and reducing the share of defects to 1-3 % was solved

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References

Yakovlev A.D. Khimiya i tekhnologiya lakokrasochnykh pokrytiy [Chemistry and Technology of Paint Coatings]. St. Petersburg, Himizdat Publ., 2008. 448 p.

Brock T., Groteklyus M., Mishke P. Evropeyskoye rukovodstvo po lakokrasochnym materialam i pokrytiyam [European Guidelines for Paint and Varnish Materials and Coatings]. Moscow, Paint-Media Publ., 2004. 548 p.

Gorlovsky I.A., Kozulin N.A., Evtyukov N.Z. Oborudovaniye zavodov lakokrasochnoy promyshlennosti [The Equipment of Factories of the Paint and Varnish Industry]. St. Petersburg, Chemistry Publ., 1992. 333 p.

Zhou C., Cai Z.-C., Xie F. Research on Speed Regulation System of Induction Motor Based on Slip Fre-quency Control. Proceedings of the 13th IEEE Conference on Industrial Electronics and Applications, ICIEA, 2018, pp. 1390–1393. DOI: 10.1109/ICIEA.2018.8397926

Sruthi M.P., Nagamani C., Ilango G.S. Dynamic Load Sharing in Multi-Machine Conveyor Belt Systems. Asia-Pacific Power and Energy Engineering Conference, APPEEC, 2017, pp. 1–6. DOI: 10.1109/APPEEC.2017.8308953

Kirschen D.S., Novotny D.W., Lipo T.A. Optimal Efficiency Control of an Induction-Motor Drive. IEEE Transactions on Energy Conversion, vol. 2, pp. 70–76. DOI: 10.1109/TEC.1987.4765806

Iyer J., Tabarraee K., Chiniforoosh, S. An Improved V/F Control Scheme for Symmetric Load Sharing of Multi-Machine Induction Motor Drive. 24th Canadian Conference on Electrical and Computer Engineering (CCECE), Proceeding – 2011. DOI:10.1109/CCECE.2011.6030711

Raj S.U., George, T.T. Speed Sensorless Induction Motor Drive with PCC in Conveyor Systems. IEEE Conference on Emerging Devices and Smart Systems (ICEDSS), Proceeding – 2016. DOI: 10.1109/ICEDSS.2016.7587796

Beauregard D.M., Benthaus B.B., Conradi A., Kulig S. Electromechanical Model of an Induction Machine Driven Roller Conveyor. 13th International conference on optimization of electrical and electronic equipment, Proceeding – 2012. DOI: 10.1109/OPTIM.2012.6231774

Harikrishnan, P. Titus, J., Hatua, K., Rao, S.E. Effect of Stator Leakage Inductance in Field Weakening Region of a Vector Controlled Induction Machine Drive for Traction Application. IEEE Transportation Electrifi-cation Conference, ITEC-India 2017. DOI: 10.1109/ITEC-India.2017.8356940

Toledo S., Rivera M., Muñoz J., Peña R., Riveros J., Gregor, R. Fixed Switching Frequency Predictive Con-trol for a Multi-Drive Indirect Matrix Converter System. IEEE Southern Power Electronics Conference, SPEC 2017. DOI: 10.1109/SPEC.2017.8333672

Kodkin V.L. Experimental Research of Asynchronous Electric Drive with Positive Dynamic Feedback on Stator Current. III International Conference on Industrial Engineering, Applications and Manufacturing, ICIEAM 2017 – Proceedings, 2017. https://ieeexplore.ieee.org/document/8076179/. DOI: 10.1109/ICIEAM.2017.8076179

Anikin A.S., Kodkin A.S., Baldenkov A.A. [Dynamic Positive Coupling in Asynchronous Electric Drives with Frequency Cntrol]. Priorities of World Science: Experiment and Scientific Discussion: Materials of the 8th International Scientific Conference. Scientific and Publishing Center “Otkrytie”. North Charleston, SC, USA, –18 June 2015, pp. 119–124.

Kodkin V.L., Shmarin Ya.A., Anikin A.S., Baldenkov A.A., Loginova N.A. [Correction of Dynamic Mo-ment Perturbations in Electric Drives of Alternating Current]. Science of SUSU. Materials of the 68th Scientific Conference, 2016, pp. 805–814. (in Russ.)

Kodkin V.L., Shmarin Y.A., Anikin A.S., Baldenkov A.A. [Device of Frequency Control of an Asynchro-nous Electric Drive]. Patent RF, no. 2599529, 2016.

Kodkin V.L., Anikin A.S., Baldenkov A.A. [Device of Frequency Control of an Asynchronous Electric Drive]. Patent RF, no. 2660460, 2018.

Published

2018-11-30

How to Cite

[1]
Kodkin, V., Anikin А., Baldenkov, A., Yanmin, J. and Ji Chen, H. 2018. OPTIMIZATION OF DYNAMIC MODES OF A TECHNOLOGICAL LINE ASYNCHRONOUS ELECTRIC DRIVES COMPLEX. Bulletin of the South Ural State University series "Power Engineering". 18, 4 (Nov. 2018), 121–129. DOI:https://doi.org/10.14529/power180413.