Publication
Han-Vit Kim, Do-Hyeon Kim, and June-Seok Lee, "Comparison of Flux-Weakening Control Methods for Wound Field Synchronous Motor," in Proc. 2024 IEEE Applied Power Electronics Conference and Exposition (APEC), Long Beach, CA, USA, 25-29 Feb. 2024.
2024
PEEMS
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May. 16, 2024
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1. Authors: Han-Vit Kim, Do-Hyeon Kim, and June-Seok Lee
2. Title: Comparison of Flux-Weakening Control Methods for Wound Field Synchronous Motor
3. Published in: 2024 IEEE Applied Power Electronics Conference and Exposition (APEC)
4. Date of Conference: 25-29 Feb. 2024
5. Conference Location: Long Beach, CA, USA
6. Pages:
7. Abstract
: This paper compares two flux-weakening control methods used in the high-speed operation of a wound field synchronous motor (WFSM) and proposes a standard for the selection of an appropriate flux-weakening control method. WFSM is characterized by generating rotor flux by flowing current in the field windings. Therefore, there are two ways to control the flux-weakening of the WFSM. The first way is to inject a negative d-axis current, which is similar to other types of motors, and the second way is to use the inherent characteristic of WFSM, which reduces a field current. According to the design characteristics of WFSM, the two flux-weakening control methods show differences in the torque-speed curve at the high-speed region. In this paper, the comparison of two flux-weakening control methods for WFSM is suggested. In addition, a standard for selecting the appropriate flux-weakening control method is proposed. The validity of the proposed method is verified by simulation results.
- Nov. 25, 2024 Joon-Seok Kim, Do-Hyeon Kim, June-Hee Lee, and June-Seok Lee, "Copper-Loss-Minimizing Strategy based on Single Look-Up Table for Wound Field Synchronous Machine," in Proc. 2024 IEEE Energy Conversion Congress and Exposition (ECCE), Phoenix, AZ, USA, 20-24 Oct. 2024.
- May. 16, 2024 Do-Young Gil, Joon-Seok Kim, and June-Seok Lee, "A Smooth Pulse Number Transition Technique of Synchronized PWM for IPMSM Sensorless Control," in Proc. 2024 IEEE Applied Power Electronics Conference and Exposition (APEC), Long Beach, CA, USA, 25-29 Feb. 2024.
