LAPSE:2023.18476
Published Article

LAPSE:2023.18476
Influence of Non-Linearity in Losses Estimation of Magnetic Components for DC-DC Converters
March 8, 2023
Abstract
In this paper, the problem of estimating the core losses for inductive components is addressed. A novel methodology is applied to estimate the core losses of an inductor in a DC-DC converter in the time-domain. The methodology addresses both the non-linearity and dynamic behavior of the core magnetic material and the non-uniformity of the field distribution for the device geometry. The methodology is natively implemented using the LTSpice simulation environment and can be used to include an accurate behavioral model of the magnetic devices in a more complex lumped circuit. The methodology is compared against classic estimation techniques such as Steinmetz Equation and the improved Generalized Steinmetz Equation. The validation is performed on a practical DC-DC Buck converter, which was utilized to experimentally verify the results derived by a model suitable to estimate the inductor losses. Both simulation and experimental test confirm the accuracy of the proposed methodology. Thus, the proposed technique can be flexibly used both for direct core loss estimation and the realization of a subsystem able to simulate the realistic behavior of an inductor within a more complex lumped circuit.
In this paper, the problem of estimating the core losses for inductive components is addressed. A novel methodology is applied to estimate the core losses of an inductor in a DC-DC converter in the time-domain. The methodology addresses both the non-linearity and dynamic behavior of the core magnetic material and the non-uniformity of the field distribution for the device geometry. The methodology is natively implemented using the LTSpice simulation environment and can be used to include an accurate behavioral model of the magnetic devices in a more complex lumped circuit. The methodology is compared against classic estimation techniques such as Steinmetz Equation and the improved Generalized Steinmetz Equation. The validation is performed on a practical DC-DC Buck converter, which was utilized to experimentally verify the results derived by a model suitable to estimate the inductor losses. Both simulation and experimental test confirm the accuracy of the proposed methodology. Thus, the proposed technique can be flexibly used both for direct core loss estimation and the realization of a subsystem able to simulate the realistic behavior of an inductor within a more complex lumped circuit.
Record ID
Keywords
core losses measurement, dynamic magnetic losses, ferrite core, spice equivalent circuit
Subject
Suggested Citation
Corti F, Reatti A, Lozito GM, Cardelli E, Laudani A. Influence of Non-Linearity in Losses Estimation of Magnetic Components for DC-DC Converters. (2023). LAPSE:2023.18476
Author Affiliations
Corti F: Department of Engineering, University of Perugia, Via G. Duranti 67, 06125 Perugia, Italy; Department of Information Engineering, University of Firenze, Via di Santa Marta 3, 50139 Firenze, Italy [ORCID]
Reatti A: Department of Information Engineering, University of Firenze, Via di Santa Marta 3, 50139 Firenze, Italy [ORCID]
Lozito GM: Department of Information Engineering, University of Firenze, Via di Santa Marta 3, 50139 Firenze, Italy [ORCID]
Cardelli E: Department of Engineering, University of Perugia, Via G. Duranti 67, 06125 Perugia, Italy
Laudani A: Department of Industrial Engineering Electronics and Mechanics, University of Roma 3, Via Vito Volterra 62b, 00146 Roma, Italy [ORCID]
Reatti A: Department of Information Engineering, University of Firenze, Via di Santa Marta 3, 50139 Firenze, Italy [ORCID]
Lozito GM: Department of Information Engineering, University of Firenze, Via di Santa Marta 3, 50139 Firenze, Italy [ORCID]
Cardelli E: Department of Engineering, University of Perugia, Via G. Duranti 67, 06125 Perugia, Italy
Laudani A: Department of Industrial Engineering Electronics and Mechanics, University of Roma 3, Via Vito Volterra 62b, 00146 Roma, Italy [ORCID]
Journal Name
Energies
Volume
14
Issue
20
First Page
6498
Year
2021
Publication Date
2021-10-11
ISSN
1996-1073
Version Comments
Original Submission
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PII: en14206498, Publication Type: Journal Article
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LAPSE:2023.18476
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https://doi.org/10.3390/en14206498
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Mar 8, 2023
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