Low-Cost Maximum Power Point Tracking Strategy and Protection Circuit Applied to an Ayanz Wind Turbine with Screw Blades

This paper provides three different research contributions applied to a Wind Turbine patented in 1606 by the inventor Jerónimo de Ayanz y Beaumont. The windmill under study is the Ayanz Wind Turbine with screw blades. The first contribution consists of an experimental characterization of the Ayanz W...

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Main Authors: Aitor Arzuaga, Asier Estivariz, Oihan Fernández, Kristian Gubía, Ander Plaza, Gonzalo Abad, David Cabezuelo Romero
Format: Article
Language:English
Published: MDPI AG 2023-08-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/16/17/6204
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author Aitor Arzuaga
Asier Estivariz
Oihan Fernández
Kristian Gubía
Ander Plaza
Gonzalo Abad
David Cabezuelo Romero
author_facet Aitor Arzuaga
Asier Estivariz
Oihan Fernández
Kristian Gubía
Ander Plaza
Gonzalo Abad
David Cabezuelo Romero
author_sort Aitor Arzuaga
collection DOAJ
description This paper provides three different research contributions applied to a Wind Turbine patented in 1606 by the inventor Jerónimo de Ayanz y Beaumont. The windmill under study is the Ayanz Wind Turbine with screw blades. The first contribution consists of an experimental characterization of the Ayanz Wind Turbine, incorporating the enclosure proposed at the patent and showing that the efficiency of the wind turbine is increased between 70% and 90% due to the enclosure being employed. As not many details about the shape of the screw blades are provided at the patent, in this article the nowadays well-studied and commercially available Archimedes Spiral Wind Turbine blade is utilized. It has been observed that by using an enclosure with a cylindrical shape, not only the efficiency of the wind turbine is increased, but the visual impact is reduced as seeing the blades rotating is avoided, which is a very important fact for many potential individual users of this wind turbine. In addition, it also enables the use of a protective mesh for birds, almost totally reducing the probability of bird deaths. The second contribution consists in a simple and low-cost Maximum Power Point Tracking (MPPT) strategy for the wind turbine, which only uses an AC three-phase impedance to capture the maximum energy from the wind, enabling to eliminate the DC-DC converter and microprocessor employed typically for this purpose. Due to this, the cost, complexity, failure rate, and power losses of the electronic power circuit are reduced which is very welcomed for small-scale wind turbines. Finally, the last contribution is a protection electronic circuit that fulfills several objectives: to brake the wind turbine under high winds and to disconnect and protect it when over-currents occur and when the voltage range of the batteries connected to the wind turbine is outside their safety range.
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spelling doaj.art-ebd06068233f49768bd8d02a2ba1021f2023-11-19T08:04:41ZengMDPI AGEnergies1996-10732023-08-011617620410.3390/en16176204Low-Cost Maximum Power Point Tracking Strategy and Protection Circuit Applied to an Ayanz Wind Turbine with Screw BladesAitor Arzuaga0Asier Estivariz1Oihan Fernández2Kristian Gubía3Ander Plaza4Gonzalo Abad5David Cabezuelo Romero6Computer and Electronics Department, Mondragon Unibertsitatea, 20500 Mondragon, SpainComputer and Electronics Department, Mondragon Unibertsitatea, 20500 Mondragon, SpainComputer and Electronics Department, Mondragon Unibertsitatea, 20500 Mondragon, SpainComputer and Electronics Department, Mondragon Unibertsitatea, 20500 Mondragon, SpainComputer and Electronics Department, Mondragon Unibertsitatea, 20500 Mondragon, SpainComputer and Electronics Department, Mondragon Unibertsitatea, 20500 Mondragon, SpainComputer and Electronics Department, Mondragon Unibertsitatea, 20500 Mondragon, SpainThis paper provides three different research contributions applied to a Wind Turbine patented in 1606 by the inventor Jerónimo de Ayanz y Beaumont. The windmill under study is the Ayanz Wind Turbine with screw blades. The first contribution consists of an experimental characterization of the Ayanz Wind Turbine, incorporating the enclosure proposed at the patent and showing that the efficiency of the wind turbine is increased between 70% and 90% due to the enclosure being employed. As not many details about the shape of the screw blades are provided at the patent, in this article the nowadays well-studied and commercially available Archimedes Spiral Wind Turbine blade is utilized. It has been observed that by using an enclosure with a cylindrical shape, not only the efficiency of the wind turbine is increased, but the visual impact is reduced as seeing the blades rotating is avoided, which is a very important fact for many potential individual users of this wind turbine. In addition, it also enables the use of a protective mesh for birds, almost totally reducing the probability of bird deaths. The second contribution consists in a simple and low-cost Maximum Power Point Tracking (MPPT) strategy for the wind turbine, which only uses an AC three-phase impedance to capture the maximum energy from the wind, enabling to eliminate the DC-DC converter and microprocessor employed typically for this purpose. Due to this, the cost, complexity, failure rate, and power losses of the electronic power circuit are reduced which is very welcomed for small-scale wind turbines. Finally, the last contribution is a protection electronic circuit that fulfills several objectives: to brake the wind turbine under high winds and to disconnect and protect it when over-currents occur and when the voltage range of the batteries connected to the wind turbine is outside their safety range.https://www.mdpi.com/1996-1073/16/17/6204wind energyAyanz Wind TurbineArchimedes turbineArchimedes Spiral wind bladesmall wind turbinemaximum power point tracking
spellingShingle Aitor Arzuaga
Asier Estivariz
Oihan Fernández
Kristian Gubía
Ander Plaza
Gonzalo Abad
David Cabezuelo Romero
Low-Cost Maximum Power Point Tracking Strategy and Protection Circuit Applied to an Ayanz Wind Turbine with Screw Blades
Energies
wind energy
Ayanz Wind Turbine
Archimedes turbine
Archimedes Spiral wind blade
small wind turbine
maximum power point tracking
title Low-Cost Maximum Power Point Tracking Strategy and Protection Circuit Applied to an Ayanz Wind Turbine with Screw Blades
title_full Low-Cost Maximum Power Point Tracking Strategy and Protection Circuit Applied to an Ayanz Wind Turbine with Screw Blades
title_fullStr Low-Cost Maximum Power Point Tracking Strategy and Protection Circuit Applied to an Ayanz Wind Turbine with Screw Blades
title_full_unstemmed Low-Cost Maximum Power Point Tracking Strategy and Protection Circuit Applied to an Ayanz Wind Turbine with Screw Blades
title_short Low-Cost Maximum Power Point Tracking Strategy and Protection Circuit Applied to an Ayanz Wind Turbine with Screw Blades
title_sort low cost maximum power point tracking strategy and protection circuit applied to an ayanz wind turbine with screw blades
topic wind energy
Ayanz Wind Turbine
Archimedes turbine
Archimedes Spiral wind blade
small wind turbine
maximum power point tracking
url https://www.mdpi.com/1996-1073/16/17/6204
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