Design of an MPPT Technique for the Indirect Measurement of the Open-Circuit Voltage Applied to Thermoelectric Generators
This paper presents the design of a maximum power point-tracking (MPPT) technique for DC–DC converters that are used in energy-harvesting systems based on thermoelectric generators. This technique is based on the analysis of the characteristics of the converter to measure the open-circuit voltage in...
| Published in: | Energies |
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| Main Authors: | , , , , , , , , , |
| Format: | Article |
| Language: | English |
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MDPI AG
2022-05-01
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| Online Access: | https://www.mdpi.com/1996-1073/15/10/3833 |
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| author | Ricardo Marroquín-Arreola Jinmi Lezama Héctor Ricardo Hernández-De León Julio César Martínez-Romo José Antonio Hoyo-Montaño Jorge Luis Camas-Anzueto Elías Neftalí Escobar-Gómez Jorge Evaristo Conde-Díaz Mario Ponce-Silva Ildeberto Santos-Ruiz |
| author_facet | Ricardo Marroquín-Arreola Jinmi Lezama Héctor Ricardo Hernández-De León Julio César Martínez-Romo José Antonio Hoyo-Montaño Jorge Luis Camas-Anzueto Elías Neftalí Escobar-Gómez Jorge Evaristo Conde-Díaz Mario Ponce-Silva Ildeberto Santos-Ruiz |
| author_sort | Ricardo Marroquín-Arreola |
| collection | DOAJ |
| container_title | Energies |
| description | This paper presents the design of a maximum power point-tracking (MPPT) technique for DC–DC converters that are used in energy-harvesting systems based on thermoelectric generators. This technique is based on the analysis of the characteristics of the converter to measure the open-circuit voltage indirectly. The main contribution of this article is that the algorithm measures the voltage at the maximum power point without the need to disconnect the source of the circuit, as happens when the fractional open-circuit voltage (FOCV) technique is used. The algorithm is based on a predetermined initial duty cycle, which is applied to the circuit, and the input voltage and input current are read. With these values, the open-circuit voltage and short-circuit current are calculated with equations obtained from the circuit. Then, it calculates the duty cycle at the maximum power point and applies it to the circuit. If this duty cycle does not obtain the maximum power from the circuit, the algorithm starts a second stage based on fuzzy logic to calculate an increase or decrease in the duty cycle. The designed technique was evaluated using a topology based on a DC–DC flyback converter variant and was compared with the P&O technique and obtained better results. The designed technique provides between 3.9% and 5.6% more power to the load than the P&O technique in a 20 W system. |
| format | Article |
| id | doaj-art-17c48ea2331f4eeea48b7dc7a0a67a4c |
| institution | Directory of Open Access Journals |
| issn | 1996-1073 |
| language | English |
| publishDate | 2022-05-01 |
| publisher | MDPI AG |
| record_format | Article |
| spelling | doaj-art-17c48ea2331f4eeea48b7dc7a0a67a4c2025-08-19T22:51:31ZengMDPI AGEnergies1996-10732022-05-011510383310.3390/en15103833Design of an MPPT Technique for the Indirect Measurement of the Open-Circuit Voltage Applied to Thermoelectric GeneratorsRicardo Marroquín-Arreola0Jinmi Lezama1Héctor Ricardo Hernández-De León2Julio César Martínez-Romo3José Antonio Hoyo-Montaño4Jorge Luis Camas-Anzueto5Elías Neftalí Escobar-Gómez6Jorge Evaristo Conde-Díaz7Mario Ponce-Silva8Ildeberto Santos-Ruiz9Tecnológico Nacional de México, I.T. de Tuxtla Gutiérrez, Tuxtla Gutiérrez 29050, Chiapas, MexicoUniversidad Nacional Tecnológica de Lima Sur, Lima C.P. 15834, PeruTecnológico Nacional de México, I.T. de Tuxtla Gutiérrez, Tuxtla Gutiérrez 29050, Chiapas, MexicoTecnológico Nacional de México, I.T. de Aguascalientes, Aguascalientes 20256, Ags, MexicoTecnológico Nacional de México, I.T. de Hermosillo, Hermosillo 83170, Sonora, MexicoTecnológico Nacional de México, I.T. de Tuxtla Gutiérrez, Tuxtla Gutiérrez 29050, Chiapas, MexicoTecnológico Nacional de México, I.T. de Tuxtla Gutiérrez, Tuxtla Gutiérrez 29050, Chiapas, MexicoCONACYT-Universidad de Ciencias y Artes de Chiapas, Instituto de Investigación e Innovación en Energías Renovables, Tuxtla Gutiérrez 29039, Chiapas, MexicoTecnológico Nacional de México, CENIDET, Cuernavaca 62490, Morelos, MexicoTecnológico Nacional de México, I.T. de Tuxtla Gutiérrez, Tuxtla Gutiérrez 29050, Chiapas, MexicoThis paper presents the design of a maximum power point-tracking (MPPT) technique for DC–DC converters that are used in energy-harvesting systems based on thermoelectric generators. This technique is based on the analysis of the characteristics of the converter to measure the open-circuit voltage indirectly. The main contribution of this article is that the algorithm measures the voltage at the maximum power point without the need to disconnect the source of the circuit, as happens when the fractional open-circuit voltage (FOCV) technique is used. The algorithm is based on a predetermined initial duty cycle, which is applied to the circuit, and the input voltage and input current are read. With these values, the open-circuit voltage and short-circuit current are calculated with equations obtained from the circuit. Then, it calculates the duty cycle at the maximum power point and applies it to the circuit. If this duty cycle does not obtain the maximum power from the circuit, the algorithm starts a second stage based on fuzzy logic to calculate an increase or decrease in the duty cycle. The designed technique was evaluated using a topology based on a DC–DC flyback converter variant and was compared with the P&O technique and obtained better results. The designed technique provides between 3.9% and 5.6% more power to the load than the P&O technique in a 20 W system.https://www.mdpi.com/1996-1073/15/10/3833DC–DC converterfuzzy logicindirect measurementMPPTopen-circuit voltagethermoelectric generators |
| spellingShingle | Ricardo Marroquín-Arreola Jinmi Lezama Héctor Ricardo Hernández-De León Julio César Martínez-Romo José Antonio Hoyo-Montaño Jorge Luis Camas-Anzueto Elías Neftalí Escobar-Gómez Jorge Evaristo Conde-Díaz Mario Ponce-Silva Ildeberto Santos-Ruiz Design of an MPPT Technique for the Indirect Measurement of the Open-Circuit Voltage Applied to Thermoelectric Generators DC–DC converter fuzzy logic indirect measurement MPPT open-circuit voltage thermoelectric generators |
| title | Design of an MPPT Technique for the Indirect Measurement of the Open-Circuit Voltage Applied to Thermoelectric Generators |
| title_full | Design of an MPPT Technique for the Indirect Measurement of the Open-Circuit Voltage Applied to Thermoelectric Generators |
| title_fullStr | Design of an MPPT Technique for the Indirect Measurement of the Open-Circuit Voltage Applied to Thermoelectric Generators |
| title_full_unstemmed | Design of an MPPT Technique for the Indirect Measurement of the Open-Circuit Voltage Applied to Thermoelectric Generators |
| title_short | Design of an MPPT Technique for the Indirect Measurement of the Open-Circuit Voltage Applied to Thermoelectric Generators |
| title_sort | design of an mppt technique for the indirect measurement of the open circuit voltage applied to thermoelectric generators |
| topic | DC–DC converter fuzzy logic indirect measurement MPPT open-circuit voltage thermoelectric generators |
| url | https://www.mdpi.com/1996-1073/15/10/3833 |
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