Ira H. Abbott and Albert E. Von Doenhoff. Theory of Wing Sections: Including a Summary of Airfoil Data. Dover Publications, 1959.; JP Abraham, BD Plourde, GS Mowry, WJ Minkowycz, and EM Sparrow. Summary of savonius wind turbine development and future applications for small-scale power generation. Journal of Renewable and Sustainable Energy, 4(4), 2012.; Razzaqul Ahshan, Muhammad Shafiq, Nasser Hosseinzadeh, and Abdullah Al-Badi. Distributed wind systems for moderate wind speed sites. In 2018 5th International Conference on Renewable Energy: Generation and Applications (ICREGA), pages 1–5. IEEE, 2018.; Abdul Hai Alami, Montaser Mahmoud, Haya Aljaghoub, Ayman Mdallal, Mohammad Ali Abdelkareem, Siti Kartom Kamarudin, and Abdul Ghani Olabi. Progress in 3d printing in wind energy and its role in achieving sustainability. International Journal of Thermofluids, 20:100496, 2023a.; Abdul Hai Alami, Montaser Mahmoud, Haya Aljaghoub, Ayman Mdallal, Mohammad Ali Abdelkareem, Siti Kartom Kamarudin, and Abdul Ghani Olabi. Progress in 3D printing in wind energy and its role in achieving sustainability. International Journal of Thermofluids, 20:100496, 2023b.; Eduard Matheo Alave-Vargas, Renán Orellana-Lafuente, and Daniel Felipe Semp´ertegui-Tapia. Estado del arte sobre aerogeneradores de eje vertical. Investigaci´on & Desarrollo, 22(1): 161–172, 2022.; Artillery3d. Impresora 3D Artillery Hornet, November 2023. Disponible en: https: //artillery3d.cl/producto/impresora-3d-artillery-hornet/#:˜:text=Consumo% 20de%20energ%C3%ADa%3A%20110V%2F220V,Peso%20del%20producto%3A%207.8KG.; Darío Fernando Arévalo Arteaga. Diseño y construcción de un aerogenerador eólico de eje vertical tipo savonius utilizando tubería de pvc, 2016.; Leila N. Azadani and Mojtaba Saleh. Effect of blade aspect ratio on the performance of a pair of vertical axis wind turbines. Ocean Engineering, 265:112627, 2022. ISSN 0029-8018. doi:
https://doi.org/10.1016/j.oceaneng.2022.112627. URL
https://www.sciencedirect. com/science/article/pii/S0029801822019102.; T Kevin B Felipe, S Andrés. Zonas no interconectadas eléctricamente en colombia: problemas y perespectivas, 07 de Agosto de 2021.; K Bassett, R Carriveau, and DS-K Ting. 3D printed wind turbines part 1: Design considerations and rapid manufacture potential. Sustainable Energy Technologies and Assessments, 11: 186–193, 2015.; BeagleBoard. Debian - beagleboard, May 2021. URL
https://www.beagleboard.org/ projects/debian.; O. Berdugo and J. Pérez. Diseño y construcción de un prototipo turbina eólica de eje vertical para generación a baja potencia, 2011a.; O Berdugo and J Pérez. Diseño y construcción de un prototipo turbina eólica de eje vertical para generación a baja potencia. Universidad Industrial de Santander, 2011b.; Muhammad Mahmood Aslam Bhutta, Nasir Hayat, Ahmed Uzair Farooq, Zain Ali, Sh Rehan Jamil, and Zahid Hussain. Vertical axis wind turbine–a review of various configurations and design techniques. Renewable and Sustainable Energy Reviews, 16(4):1926–1939, 2012.; P Bhuyan and A Biswas. Investigations on self-starting and performance characteristics of simple h and hybrid h-savonius vertical axis wind rotors. Energy Conversion and Management, 87:859–867, 2014. doi:10.1016/j.enconman.2014.06.089.; Alessandro Bianchini, Giovanni Ferrara, and Lorenzo Ferrari. Design guidelines for h-darrieus wind turbines: Optimization of the annual energy yield. Energy Conversion and Management, 89:690–707, 2015. ISSN 0196-8904. doi:
https://doi.org/10.1016/j.enconman.2014.10.038.; W Brignol, L Canha, D Maguerroski, A Barin, and R Azevedo. Diversification of brazilian energy matrix by connecting distributed generation sources fuelled by biogas from swine manure. In 2016 51st International Universities Power Engineering Conference (UPEC), pages 1–6. IEEE, 2016.; Ioana Octavia Bucur, Ion Malael, and Mihai Predescu. Vertical axis wind turbine blade manufacturing using composite materials. In 2021 10th International Conference on ENERGY and ENVIRONMENT (CIEM), pages 1–5. IEEE, 2021. doi:10.1109/CIEM52821. 2021.9614931.; Tony Burton, Nick Jenkins, David Sharpe, and Ervin Bossanyi. Wind energy handbook. John Wiley & Sons, 2011.; Katrina Calautit and Cameron Johnstone. State-of-the-art review of micro to small-scale wind energy harvesting technologies for building integration. Energy Conversion and Management: X, page 100457, 2023a.; Katrina Calautit and Cameron Johnstone. State-of-the-art review of micro to small-scale wind energy harvesting technologies for building integration. Energy Conversion and Management: X, page 100457, 2023b.; Cristian Cardona, Jorge Sierra, Edwin Chica, and Diego Hincapié-Zuluaga. Turbinas hidrocinéticas de eje horizontal: una revisión de la literatura. Tecnología y Ciencias del Agua, 09:180–197, 06 2018. doi:10.24850/j-tyca-2018-03-08.; Pablo Jesús Casas García. Diseño de un aerogenerador minieólico. Master’s thesis, Universitat Politécnica de Valéncia, 2016.; Tai-Lin Chang, Shun-Feng Tsai, and Chun-Lung Chen. Optimal design of novel blade profile for savonius wind turbines. Energies, 14(12):3484, 2021.; Jean-Jacques Chattot. Optimization of wind turbines using helicoidal vortex model. J. Sol. Energy Eng., 125(4):418–424, 2003.; Hao Chen, Deguang Xu, and Xin Deng. Control for power converter of small-scale switched reluctance wind power generator. IEEE Transactions on Industrial Electronics, 68(4): 3148–3158, 2020.; Alexandru-Polifron Chirit,a, Paul-Petru Bere, Radu Iulian Radoi, and Liliana Dumitrescu. Aspects regarding the use of 3d printing technology and composite materials for testing and manufacturing vertical axis wind turbines. Mater. Plast, 56(4):910–917, 2019.; Jonathan Clarke, Luke Hancox, Daniel MacKenzie, and Matthew Whelan. Design of a vertical-axis wind turbine. Technical report, MUN VAWT Design Group M11, April 2014. URL
https://munvawtdesign.weebly.com/uploads/2/5/9/4/25940231/final_ report.pdf. Final Report.; GrabCAD Community. Free CAD Designs, Files & 3D Models — The GrabCAD Community Library, 2024. URL
https://grabcad.com/library/darrieus-turbine-1.; Nicolás Cruz Peña. Diseño y caracterización experimental de una turbina eólica darrieus de pequeña escala. 2015.; Michael S Davis and Mohammad R Madani. 3D-printing of a functional small-scale wind turbine. In 2018 6th International Renewable and Sustainable Energy Conference (IRSEC), pages 1–6. IEEE, 2018.; Sree Bash Chandra Debnath, Biki Barua, Rezaul Karim, and Muslim Uddin Faisal. Design & implementation of an efficient windmill anemometer for wind speed measurement using microcontroller. In 2016 3rd International Conference on Electrical Engineering and Information Communication Technology (ICEEICT), pages 1–5, Sep. 2016. doi:10.1109/ CEEICT.2016.7873109.; Sourabh Deshpande, Nithin Rao, Nitin Pradhan, and John L. Irwin. Hybrid polymer additive manufacturing of a darrieus type vertical axis wind turbine design to improve power generation efficiency. Volume 2: Advanced Manufacturing, Nov 2016. doi:10.1115/ imece2016-65910.; Julio Mario Rodríguez Devis. Coeficientes de potencia en molinos savonius. Ingenieria e investigación, (13):62–67, 1985.; Louis V Divone. Evolution of modern wind turbines part a: 1940 to 1994. Wind Turbine Technology: Fundamental Concepts in Wind Turbine Engineering, ASME Press, USA, pages 106–172, 2009.; Oying Doso and Sarsing Gao. A short review on savonius rotor. AIP Conference Proceedings, 2273(1):050036, 2020.; M. Dressler, T. Studnitzky, and B. Kieback. Additive manufacturing using 3d screen printing. In 2017 International Conference on Electromagnetics in Advanced Applications (ICEAA), pages 476–478, 2017. doi:10.1109/ICEAA.2017.8065283.; Longhuan Du, Grant Ingram, and Robert G Dominy. A review of h-darrieus wind turbine aerodynamic research. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, 233(23-24):7590–7616, 2019.; The Tech Edvocate. How to calculate air density: A comprehensive guide, Oct 2023. URL
https://www.thetechedvocate.org/ how-to-calculate-air-density-a-comprehensive-guide/. The Tech Edvocate, Accessed: 2024-06-03.; Biomass Energy. Renewables 2017 global status report. Technical report, Renewable Energy Policy Network for the 21st Century, Paris, REN21, 2016.; U.S. Department Of Energy. Building america team: The university of alabama. URL
https://www.energy.gov/eere/buildings/ iot-based-comfort-control-and-fault-diagnostics-system-energy-efficient-homes; U.S. Department Of Energy. Distributed wind market report: 2023 edition, 2023a. URL
https://www.energy.gov/sites/default/files/2023-08/ distributed-wind-market-report-2023-edition_0.pdf. Accessed: 2024-06-03.; U.S. Department Of Energy. Department of energy announces $6.7 million for iot integration research, 2023b. URL
https://www.energy.gov/articles/ department-energy-announces-67-million-iot-integration-research. Accessed: 2024-06-03.; Sandra Eriksson, Hans Bernhoff, and Mats Leijon. Evaluation of different turbine concepts for wind power. Renewable and Sustainable Energy Reviews, 12(5):1419–1434, 2008a. doi:10.1016/j.rser.2006.05.017.; Sandra Eriksson, Hans Bernhoff, and Mats Leijon. Evaluation of different turbine concepts for wind power. Renewable and Sustainable Energy Reviews, 12(5):1419–1434, 2008b. doi:10.1016/j.rser.2006.05.017.; Meltem Eryildiz. Estimation of three-point bending behavior using finite element method for 3d-printed polymeric sandwich structures with honeycomb and reentrant core. European Mechanical Science, 6:196–200, 09 2022. doi:10.26701/ems.1101832.; C Moreno Figueredo and O Herrera Sanchez. Método simplificado para la determinaci´on del potencial eólico cuando se desean instalar pequeñas máquinas eólicas, 2008.; Diego Rodrigo Flores Galindo. Diseño de perfiles aerodinámicos. PhD thesis, Instituto Politécnico Nacional, 2006.; Alan Javier González Díaz, Leonardo José Geovo Coronado, and Yahir Enrique Gonz´alez Doria. Selecci´on del perfil alar sim´etrico ´optimo para un aerogenerador de eje vertical utilizando la dinámica de flujos computacional. Revista Ingeniare, 13(22), 2017.; Hasan Gunduz, Zafar A. Khan, Abdullah Altamimi, and Dilan Jayaweera. An innovative methodology for load and generation modelling in a reliability assessment with pv and smart meter readings. In 2018 IEEE Power Energy Society General Meeting (PESGM), pages 1–5, 2018. doi:10.1109/PESGM.2018.8585829.; Yi Guo, John N. Jiang, and Choon Yik Tang. Nonlinear control of wind power generation systems. In 2009 IEEE/PES Power Systems Conference and Exposition, pages 1–7, 2009. doi:10.1109/PSCE.2009.4840246.; Victor A Gómez, Cesar Hernández, and Edwin Rivas. Visión general, caracter´ısticas y funcionalidades de la red el´ectrica inteligente (smart grid). Información tecnológica, 29(2): 89–102, 2018.; A Hamdan, F Mustapha, KA Ahmad, and AS Mohd Rafie. A review on the micro energy harvester in Structural Health Monitoring (SHM) of biocomposite material for Vertical Axis Wind Turbine (VAWT) system: A Malaysia perspective. Renewable and Sustainable Energy Reviews, 35:23–30, 2014.; Charles A Hamilton. BeagleBone black cookbook. Packt publishing Ltd, 2015.; John Herbst and Angelo Gattozzi. Basic Considerations in the Design of a DC Generator. 2009.; Sebastián Hincapié, Neby J. Castrillón, and Juan C. González. Study of the implementation of synthetic inertia in wind turbines and its impact in the colombian. In 2018 IEEE PES Transmission & Distribution Conference and Exhibition - Latin America (T&D-LA), pages 1–5, 2018. doi:10.1109/TDC-LA.2018.8511720.; E. L. Houghton and P. W. Carpenter. Aerodynamics for Engineering Students. Butterworth-Heinemann, 7th edition, 2003.; Huilan Huang, Jiabin Luo, and Gang Li. Study on the optimal design of vertical axis wind turbine with novel variable solidity type for self-starting capability and aerodynamic performance. Energy, 271:127031, 2023. ISSN 0360-5442. doi:
https://doi.org/10.1016/ j.energy.2023.127031. URL
https://www.sciencedirect.com/science/article/pii/ S0360544223004255.; Energy Hunters. Turbine eoliche ad asse orizzontale o verticale - un confronto, Dec 2017. URL
https://www.energyhunters.it/ turbine-eoliche-ad-asse-orizzontale-o-verticale-un-confronto/.; Ghulam Hussain, Mohammed Alkahtani, and Marwan Bin Muhammad Alsultan. Aerodynamic analyses of airfoils using machine learning as an alternative to rans simulation. Applied Sciences, 12(10):5194, 2022. doi:10.3390/app12105194.; Benjamin Huybrechts, Macarena P´erez-Su´arez, Mar Cobe˜na, and Isadora S´anchez-Torn´e. Energy co-operatives in spain: The role of social enterprises in the energy transition. Futures, 160, 2024. doi:10.1016/j.futures.2024.103381. URL https: //www.scopus.com/inward/record.uri?eid=2-s2.0-85191002050&doi=10.1016%2fj. futures.2024.103381&partnerID=40&md5=516a6458f8edfea5c6762e6c61c1693e. Cited by: 0.; StartUs Insights. Top 10 renewable energy trends in 2024, Jan 2024. URL
https://www.startus-insights.com/innovators-guide/ top-10-renewable-energy-trends-2022/.; M Khudri Johari, Muhd Jalil, and Mohammad Faizal Mohd Shariff. Comparison of horizontal axis wind turbine (HAWT) and vertical axis wind turbine (VAWT). International Journal of Engineering and Technology, 7(4.13):74–80, 2018.; Yannick Jooss, Eivind Berg Ronning, R Jason Hearst, and Tania Bracchi. Influence of position and wind direction on the performance of a roof mounted vertical axis wind turbine. Journal of Wind Engineering and Industrial Aerodynamics, 230:105177, 2022.; M Sateesh Kumar, YV Pavan Kumar, D John Pradeep, and Ch Pradeep Reddy. Analysis on the effectiveness of vertical axis wind turbine for domestic consumers. pages 1–6, 2020.; Charles L. Ladson and A. S. Hill. A wind tunnel investigation of the naca 23012 airfoil with various amounts of grit roughness. Technical Report NASA TM-89033, NASA, 1988.; Stephen Legg. IPCC, 2021: Climate change 2021-the physical science basis. Interaction, 49 (4):44–45, 2021.; JM Guzmán León, Pablo Sosa Flores, ME Anaya Pérez, RA Pérez Enciso, LN Gutiérrez Ortiz, CM Sánchez Domínguez, Alejandro Garcia-Juarez, and Nun Pital´ua-D´ıaz. Design of an experimental prototype of low-power wind generators with savonius turbines. In 2022 IEEE International Autumn Meeting on Power, Electronics and Computing (ROPEC), volume 6, pages 1–6. IEEE, 2022.; DHW Li, KL Cheung, WWH Chan, CCK Cheng, and TCH Wong. An analysis of wind energy potential for micro wind turbine in hong kong. Building Services Engineering Research and Technology, 35(3):268–279, 2014.; Peng Lu, Lin Ye, Yongning Zhao, Binhua Dai, Ming Pei, and Yong Tang. Review of meta-heuristic algorithms for wind power prediction: Methodologies, applications and challenges. Applied Energy, 301:117446, 2021.; Fabio Luise, Alberto Tessarolo, Freddie Agnolet, Stefano Pieri, Maurizio Scalabrin, Massimiliano Di Chiara, and Matteo De Martin. Design optimization and testing of high-performance motors: Evaluating a compromise between quality design development and production costs of a halbach-array pm slotless motor. IEEE Industry Applications Magazine, 22(6):19–32, 2016. doi:10.1109/MIAS.2015.2459118.; E.H. Lysen. Introduction to Wind Energy. Consultancy Services Wind Energy Developing Countries, Amersfoort, Netherlands, 2 edition, 1983.; Ayaskanta Mishra. Embedded Development Platforms To Design Prototypes Of Internet Of Things (IoT) Applications: A Study. Int. J. Res. Advent Technol, 7:344–353, 2019.; Derek Molloy. Exploring BeagleBone: tools and techniques for building with embedded Linux. John Wiley & Sons, 2019.; Francesc Moreno Cerdá. Demostrador arquitectura publish/subscribe con mqtt. B.S. thesis, Universitat Polit´ecnica de Catalunya, 2018.; Rahman Mosfequr, Salyers Travis, Ahmed Mahbub, EtShahat Ade, Soloiu Valentin, and Maroha Emile. Investigation of aerodynamic performance of helical shape vertical-axis wind turbine models with various number of blades using wind tunnel testing and computational fluid dynamics. In International Mechanical Engineering Congress and Exposition, volume Volume 7: Fluids Engineering of ASME International Mechanical Engineering Congress and Exposition, page V007T09A089, 11 2016.; Manikandan Murugaiah and Kanak Agarwal. A comprehensive dataset of the aerodynamic and geometric coefficients of airfoils in the public domain. Data, 9, 04 2024. doi:10.3390/ data9050064.; Gabriel Naccache and Marius Paraschivoiu. Parametric study of the dual vertical axis wind turbine using CFD. Journal of Wind Engineering and Industrial Aerodynamics, 172:244–255, 2018.; Rambabu Nalagandla and Balachandra Pattanaik. IoT Enabled Hybrid Renewable Energy System for Street Light Applications. In 2023 Second International Conference on Augmented Intelligence and Sustainable Systems (ICAISS), pages 1464–1468. IEEE, 2023; Thalita Nazaré and Erivelton Nepomuceno. Tracing the path: A historical perspective on wind and wave energy’s progress. In 2023 8th IEEE History of Electrotechnology Conference (HISTELCON), pages 80–83, 2023. doi:10.1109/HISTELCON56357.2023.10365780; Statistical Review of World Energy. Renewable energy generation, 2024. URL
https://ourworldindata.org/grapher/modern-renewable-energy-consumption? country=˜OWID_WRL. Our World in Data.; Lan Ou-Yang and Yu Ren. The development of wind-solar energy systems in china. In 2009 International Conference on Energy and Environment Technology, volume 3, pages 626–627. IEEE, 2009.; Stephanie Lorena Pedrozo Tapia. Diseño y prueba de desempeño de un rotor tipo savonius para extracción de energía a partir del flujo vehicular. 2021.; Gianmario Pellegrino, Francesco Cupertino, and Chris Gerada. Automatic design of synchronous reluctance motors focusing on barrier shape optimization. IEEE Transactions on Industry Applications, 51(2):1465–1474, 2015. doi:10.1109/TIA.2014.2345953; Alain Picard, RS Davis, M Glaser, and K Fujii. Revised formula for the density of moist air (cipm-2007). Metrologia, 45(2):149, 2008.; Kelvin Alves Pinheiro, Sérgio de Souza Custódio Filho, Jerson Rogério Pinheiro Vaz, and Alexandre Luiz Amarante Mesquita. Effect of bearing dissipative torques on the dynamic behavior of h-darrieus wind turbines. Journal of the Brazilian Society of Mechanical Sciences and Engineering, 43(9):410, 2021.; Silvio Quincozes, Tubino Emilio, and Juliano Kazienko. MQTT protocol: fundamentals, tools and future directions. IEEE Latin America Transactions, 17(09):1439–1448, 2019.; Muhamad Fadhli Ramlee, Ahmad Fazlizan, and Sohif Mat. Performance evaluation of h-type darrieus vertical axis wind turbine with different turbine solidity. Journal of Computational and Theoretical Nanoscience, 17(2):833–839, Feb 2020. doi:10.1166/jctn.2020.8726.; S Ramu, M Abhilash, M Ajay, S Aravind, and M Hariprasad. Low expense vertical axis wind turbine using permanent magnets. International Journal of Mechanical Engineering and Technology, 7(2):244–260, 2016.; Anton Rass˜olkin, Ants Kallaste, Toomas Vaimann, and Hans Tiismus. Control challenges of 3d printed switched reluctance motor. In 2019 26th International Workshop on Electric Drives: Improvement in Efficiency of Electric Drives (IWED), pages 1–5, 2019. doi:10.1109/IWED.2019.8664282.; Beibei Ren and Qing-Chang Zhong. Ude-based robust control of variable-speed wind turbines. pages 3818–3823, 11 2013. doi:10.1109/IECON.2013.6699744.; Beñat Sanz, Ignacio Cruz, Javier España, Pau Salanilla, and Alvaro García, 2012. URL
https://es.scribd.com/document/227843187/ Guia-Sobre-Tecnologia-Minieolica-Fenercom-2012.; SJ Savonius. The s-rotor and its applications. Mechanical Engineering, 53:333–338, 1931.; Robert E Sheldahl and Paul C Klimas. Aerodynamic characteristics of seven symmetrical airfoil sections through 180-degree angle of attack for use in aerodynamic analysis of vertical axis wind turbines. Technical report, Sandia National Laboratories, 1981.; Robert E Sheldahl, Bennie F Blackwell, and Louis V Feltz. Wind tunnel performance data for two-and three-bucket savonius rotors. Journal of Energy, 2(3):160–164, 1978.; Vaishali Shirsath and Rahul Agrawal. A review of wind station data modeling for wind turbine reliability enhancement to optimize wind energy considering turbine design. In 2020 5th IEEE International Conference on Recent Advances and Innovations in Engineering (ICRAIE), pages 1–6, 2020. doi:10.1109/ICRAIE51050.2020.9358335.; Maciej Siedlecki, Aleksander Zawada, Marek Przybylski, and Barbara ´Slusarek. Methods of preparing soft and hard magnetic elements by additive manufacturing — review. In 2019 15th Selected Issues of Electrical Engineering and Electronics (WZEE), pages 1–4, 2019. doi:10.1109/WZEE48932.2019.8979709.; A Suresh, Belqasem Aljafari, Sudhakar Babu Thanikanti, et al. Investigations of the performance of 3D printed micro wind turbine composed of PLA material. Heliyon, 10(3), 2024.; Herbert J Sutherland, Dale E Berg, and Thomas D Ashwill. A retrospective of vawt technology. 2012. doi:10.2172/1035332.; Thediylife and Instructables. Outdoor 3D Printed Wireless IoT Weather Station, Aug 2021. URL
https://www.instructables.com/ Outdoor-3D-Printed-Wireless-IoT-Weather-Station/.; W Tjiu, T Marnoto, S Mat, MH Ruslan, and K Sopian. Darrieus vertical axis wind turbine for power generation i: Assessment of darrieus vawt configurations. Renewable Energy, 75: 50–67, 2015. doi:10.1016/j.renene.2014.09.038.; Airfoil Tools. NACA 4 Digit Airfoil Generator (NACA 0025 Airfoil), 2024. URL https: //tinyurl.com/4bzd7rpt.; Daniela Torres Morimitsu. Diseño de un generador eólico de eje vertical de baja potencia, Jan 2015. URL
https://repositorio.utp.edu.co/items/ f7ded63f-43ec-455a-ac0e-e67eaf094268.; Unidad de Planeación Minero Energética. Balance de gas natural 2017, 2017. URL
https://www1.upme.gov.co/Hidrocarburos/publicaciones/Balance_Gas_Natural_ 2017-2026_26122017_VF.pdf. Accessed: 2018-09-27.; UPME. Plan indicativo de expansión de la generación, 2023. URL https: //www1.upme.gov.co/siel/Plan_expansin_generacion_transmision/Plan_de_ Expansion_Generacion_2023-2037_a_comentarios.pdf.; Libardo Vicente Vanegas. Diseño de Elementos de Máquinas. Universidad Tecnológica de Pereira, Pereira, primera edition, 2018.; Sergio Velarde Gómez. Design, construction, analysis and control of a 3d printed permanent magnet motor prototype. Master’s thesis, 2022. URL
https://repositorio.utp.edu.co/ items/e381ce7e-f7b3-4d3e-8909-d11d1ea106bf.; Hao Wang, Bendong Xiong, Zutao Zhang, Hexiang Zhang, and Ali Azam. Small wind turbines and their potential for internet of things applications. iScience, 26(9):107674, Sep 2023a. doi:10.1016/j.isci.2023.107674.; Hao Wang, Bendong Xiong, Zutao Zhang, Hexiang Zhang, and Ali Azam. Small wind turbines and their potential for internet of things applications. Iscience, 26(9), 2023b.; Simon Watson. Quantifying the variability of wind energy. Wiley Interdisciplinary Reviews: Energy and Environment, 3(4):330–342, 2014.; David Wafula Wekesa, Churchill Otieno Saoke, and Joseph Ngugi Kamau. An experimental investigation into performance characteristics of H-shaped and Savonius-type VAWT rotors. Scientific African, 10:e00603, 2020a.; David Wafula Wekesa, Churchill Otieno Saoke, and Joseph Ngugi Kamau. An experimental investigation into performance characteristics of H-shaped and Savonius-type VAWT rotors. Scientific African, 10:e00603, 2020b.; Jon Wiernga. Representative roughness parameters for homogeneous terrain. Boundary-Layer Meteorology, 63:323–363, 1993.; Ping Zhang, Yong Liu, and Ming Gu. Simulation teehnique in design of non-grid-connected wind power simulation system. In 2010 World Non-Grid-Connected Wind Power and Energy Conference, pages 1–4. IEEE, 2010.; Tianjun Zhou. New physical science behind climate change: What does IPCC AR6 tell us? The Innovation, 2(4):100173, 2021.; Sebastián Zuluaga Quintero. Pruebas de rendimiento de una turbina eólica de eje vertical con perfiles aerodinámicos curvados, 2017.;
https://hdl.handle.net/11059/15277; Universidad Tecnológica de Pereira; Repositorio Universidad Tecnológica de Pereira;
https://repositorio.utp.edu.co/home