LAPSE:2023.34030
Published Article

LAPSE:2023.34030
Performance of Linear Generator Designs for Direct Drive Wave Energy Converter under Unidirectional Long-Crested Random Waves
April 24, 2023
Abstract
For generating electricity, direct-drive wave energy converters (WECs) with linear permanent magnet generators (LPMGs) have advantages in terms of efficiency, simplicity, and force-to-weight ratio over WEC with rotary generators. However, the converter’s work under approaching-real wave conditions should be investigated. This paper studies the performance of a pico-scale WEC with two different LPMGs under unidirectional long-crested random waves. Different significant wave heights (using data in the Southern Ocean of Yogyakarta, Indonesia) and peak frequencies are tested. The JONSWAP energy spectrum is used to extract the wave elevations, while the MSS toolbox in MATLAB Simulink is employed to solve the floater’s dynamic responses. Next, the translator movements are extracted and combined with the flux distribution from FEMM simulation and analytical calculation, and the output powers are obtained. An experiment is conducted to test the output under constant speed. The results show for both designs, different tested significant wave height values produce higher output powers than peak frequency variation, but there is no specific trend on them. Meanwhile, the peak frequency is inversely proportional to the output power. Elimination of the non-facing events results in increasing output power under both parameters’ variation, with higher significant wave height resulting in a bigger increase. The semi iron-cored LPMG produces lower power loss and higher efficiency.
For generating electricity, direct-drive wave energy converters (WECs) with linear permanent magnet generators (LPMGs) have advantages in terms of efficiency, simplicity, and force-to-weight ratio over WEC with rotary generators. However, the converter’s work under approaching-real wave conditions should be investigated. This paper studies the performance of a pico-scale WEC with two different LPMGs under unidirectional long-crested random waves. Different significant wave heights (using data in the Southern Ocean of Yogyakarta, Indonesia) and peak frequencies are tested. The JONSWAP energy spectrum is used to extract the wave elevations, while the MSS toolbox in MATLAB Simulink is employed to solve the floater’s dynamic responses. Next, the translator movements are extracted and combined with the flux distribution from FEMM simulation and analytical calculation, and the output powers are obtained. An experiment is conducted to test the output under constant speed. The results show for both designs, different tested significant wave height values produce higher output powers than peak frequency variation, but there is no specific trend on them. Meanwhile, the peak frequency is inversely proportional to the output power. Elimination of the non-facing events results in increasing output power under both parameters’ variation, with higher significant wave height resulting in a bigger increase. The semi iron-cored LPMG produces lower power loss and higher efficiency.
Record ID
Keywords
iron-cored, LPMG, output power, peak frequency, random wave, semi iron-cored, significant wave height
Subject
Suggested Citation
Azhari B, Wijaya FD, Yazid E. Performance of Linear Generator Designs for Direct Drive Wave Energy Converter under Unidirectional Long-Crested Random Waves. (2023). LAPSE:2023.34030
Author Affiliations
Azhari B: Research Center for Electrical Power and Mechatronics, Indonesian Institute of Sciences, Jl. Sangkuriang, Dago, Bandung 40135, Indonesia [ORCID]
Wijaya FD: Department of Electrical Engineering and Information Technology, Universitas Gadjah Mada, Jl. Grafika, Sleman, Yogyakarta 55281, Indonesia
Yazid E: Research Center for Electrical Power and Mechatronics, Indonesian Institute of Sciences, Jl. Sangkuriang, Dago, Bandung 40135, Indonesia
Wijaya FD: Department of Electrical Engineering and Information Technology, Universitas Gadjah Mada, Jl. Grafika, Sleman, Yogyakarta 55281, Indonesia
Yazid E: Research Center for Electrical Power and Mechatronics, Indonesian Institute of Sciences, Jl. Sangkuriang, Dago, Bandung 40135, Indonesia
Journal Name
Energies
Volume
14
Issue
16
First Page
5098
Year
2021
Publication Date
2021-08-18
ISSN
1996-1073
Version Comments
Original Submission
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PII: en14165098, Publication Type: Journal Article
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LAPSE:2023.34030
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https://doi.org/10.3390/en14165098
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Apr 24, 2023
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