Abstract
The paper is devoted to the study of operating modes and features of tuning of a servo system containing a brushless magnetoelectric tachogenerator in the angular speed control loop of an executive motor. Features of tuning of the internal loop of angular speed for compensation of electromechanical time constant taking into account pulsations of the tachogenerator signal are studied. Dependences of the signal ripple coefficient at the tachogenerator filter output, the values of the signal ripple swing in the angular speed loop and the effective current value on the parameters of the system operation mode are given. The influence of the system tuning parameters on the performance indexes of angular speed control is studied. The approach to tuning of the servo system taking into account the parameters of the angular speed loop while providing a given stability margin in phase is considered. The results of studies of the servo system are given. References 16, figures 15, table 1.
References
Ashish K., Saraf, Harsh; Kumar, Ravi. Hardware design of closed loop four quadrant dc motor drive with regenera-tive braking. 2nd International Conference on Inventive Systems and Control (ICISC). Coimbatore, India, 19-20 Janu-ary, 2018. Pp. 287-292. DOI: https://doi.org/10.1109/ICISC.2018.8399080.
Khudyaev A.A., Litvinenko D.G. Comparative assessment of the quality of iterative three-channel servo electric drives with standard settings. Vestnik Natsionalnogo tekhnicheskogo universiteta KhPI. Tematicheskii vypusk: Prob-lemy avtomatizirovannogo elektroprivoda. Teoriia i praktika. 2010. No 28. Pp. 186–191. (Rus)
Ye Z., Mohamadian H.P. Comparisons of Two Feedback Servo Systems for Control Engineering Education: A Case Study on Student Performance of Speed Control Systems. ASEE Gulf-Southwest Annual Conference The University of New Mexico: 2008. DOI: https://doi.org/10.18260/1-2-370-38545.
Top A., Çakmak O., Gökbulut M. Tachogenerator DC motor speed control with PID and fuzzy logic. Journal of En-gineering and Technology. 2017. Vol. 1(1). Pp. 24-31.
Handbook of Electrical Machines. Vol. 2. Ed. I.P. Kopylova, B.K. Klokova. Moskva: Energoatomizdat, 1989. 688 p. (Rus).
Sekine H., Ishikawa T., sato S., Suto T. A compensation method of ripple voltage on DC tachogenerator. Electrical engineering in Japan. 1992. Vol. 112. Issue 2. Pp. 124-131. DOI: https://doi.org/10.1002/eej.4391120214.
Citizen. Tachometer Generators. URL: https://ccj.citizen.co.jp/en/product/tachogenerator (accessed at 28.01.2025).
Rexel. URL: https://www.rexelusa.com/s/tachometer-generators?cat=5qikh97p&attr=0va94cqpyt,3vaoksy705,4ka53st925,5lavtsxz4x,6ma67ipq4l (accessed at 28.01.2025).
ABB. Tachometer Generators. URL: https://www.baldor.com/brands/baldor-reliance/products/dc-motors/feedback-devices/tachometer-generators (accessed at 28.01.2025).
Robust heavy-duty tacho generator for industrial drives. URL: https://huebner-giessen.com/en/products/tacho-generator-tdp/ (accessed at 28.01.2025).
Corbett A.E. An axial airgap brushless DC tachogenerator. In: IEE Colloquium on Instrumentation of Rotating Electrical Machines. IET, 1991. Pp. 3/1-3/3.
Brodovsky V.N., Karzhavov B.N., Rybkin Yu.P. Brushless DC tachogenerators. Moskva: Energoizdat, 1982. (Rus).
Lebedev N.I., Gandshu V.M., Belyaeva S.A., Yavdoshak Ya.I. Research of contactless tachogenerators for elec-tric drives of machine tools and robots. Brushless electric motors with semiconductor devices. Leningrad: VNIIelektro-mash, 1985. Pp. 102–115. (Rus).
Akinin K.P., Kireyev V.G., Petukhov I.S., Filomenko A.A. Еxperimental studies of brushless magnetoelectric ta-chogenerators. Pratsi Instytutu Elektrodynamiky NAN Ukrainy. 2024. Issue 68. Pp. 114–121. DOI: https://doi.org/10.15407/publishing2024.68.114 (Ukr)
Kireyev V.G., Akinin K.P., Petukhov I.S., Filomenko A.A. Structural optimization of brushless magnetoelectric tachogenerators. Pratsi Instytutu Elektrodynamiky NAN Ukrainy. 2025. Issue 70. Pp. 93–98. DOI: https://doi.org/10.15407/publishing2025.70.093.
Víteček A., Vítečková M., Landryová L. Basic principles of automatic control. Ostrava, 2012. 118 p.

This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
Copyright (c) 2025 Tekhnichna Elektrodynamika

