Abstract
Linear electromagnetic actuators realizing periodic oscillations have gained significant importance in the
compressor and pump technology. This is due to the need of compact drive units to increase the power
density of modern pumps and compressors. This work presents an energy-based control approach for harmonic
oscillations of linear electromagnetic drives and analyzes the functionality and performance of the oscillation
control for periodic actuator movements up to 250 Hz. To obtain a more robust control behavior, the control
structure needs to be decoupled, with an amplitude and phase component using a periodical harmonic carrier
function. This approach avoids a standstill of the actuator by constantly triggering an oscillation at the
fundamental frequency of the mechanical system. The presented control approach is especially beneficial for
oscillatory systems which need to adapt their oscillation frequency to mechanical loads.
| Original language | English |
|---|---|
| Article number | 171966 |
| Number of pages | 9 |
| Journal | Journal of Magnetism and Magnetic Materials |
| Volume | 597 |
| Issue number | Article 171966 |
| DOIs | |
| Publication status | Published - 01 May 2024 |
Fields of science
- 202014 Electromagnetism
- 202 Electrical Engineering, Electronics, Information Engineering
- 202009 Electrical drive engineering
- 202011 Electrical machines
- 202015 Electronics
- 202025 Power electronics
- 202027 Mechatronics
- 202034 Control engineering
JKU Focus areas
- Sustainable Development: Responsible Technologies and Management
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