학술논문

Power Factor Improvement for a Magnetic-Geared Flat Linear Machine
Document Type
Conference
Source
2021 IEEE 4th International Electrical and Energy Conference (CIEEC) Electrical and Energy Conference (CIEEC), 2021 IEEE 4th International. :1-6 May, 2021
Subject
Engineered Materials, Dielectrics and Plasmas
Power, Energy and Industry Applications
Reactive power
Magnetic flux density
Inductance
Conferences
Air gaps
Power system harmonics
Harmonic analysis
Magnetic-geared Flat Linear Machine
Power factor
Halbach permanent-magnet arrays
slot-pole combination
Language
Abstract
The Magnetic-geared Flat Linear Machine (MGFLM) has the advantage of low material costs for long stroke applications. However, the relative low power factor of the MGFLM need to be improved. Through the derivation of the power factor equation, it is found that reducing the q-axis inductance would help to improve the power factor. The Halbach permanent-magnet arrays is adopted to reduce the harmonic components and increase the fundamental magnetic flux density of the MGFLM. Based on the FEA, the effects of every possible slot-pole combination and key dimensional parameters on the power factor and average thrust of the MGFLM are discussed. Compared to the original MGFLM, the power factor was effectively increased from 0.537 to 0.807 with a merely 3.3% loss in the average thrust.