SENSORLESS SPEED CONTROL OF THE DIRECT CURRENT MOTORS
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Keywords

DC motor
speed observer
estimation error dynamics
separation principle

How to Cite

Peresada, S., et al. “SENSORLESS SPEED CONTROL OF THE DIRECT CURRENT MOTORS”. Proceedings of the Institute of Electrodynamics of the National Academy of Sciences of Ukraine, no. 58, May 2021, p. 023, doi:10.15407/publishing2021.58.023.

Abstract

In this paper, a new speed control algorithm for a permanent magnet DC motor which does not require implementation of the angular speed sensor is presented. Three steps are performed to develop the control system: design of speed tracking control algorithm assuming the speed measurement; design of speed observer; design of sensorless speed control algorithm based on the principle of separation. Information about speed is taken from the speed observer using the motor current value. The stability of the composite system dynamics consisting of three subsystems (the speed regulation loop, current regulation loop, and speed observer) is analyzed. The feedback gains tuning procedure for decoupling of three subsystems is given. The simulation results show that the dynamic performance of the designed system is similar to the performance of the system with angular speed measurement. The resulting closed-loop system has structural robustness properties with respect to parametric and coordinate disturbances. References 12, figures 2.

https://doi.org/10.15407/publishing2021.58.023
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References

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Copyright (c) 2021 S. Peresada, Y. Nikonenko, V. Pyzhov, D. Rodkin

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