The Evaluation of Technological Competencies among Leaders of the Renewable Energy Industry: The Case of SMEs in Baja California, Mexico
Abstract
:1. Introduction
2. Context
3. Theoretical Framework
3.1. Technological Competency
“A set of cognitive and attitudinal dispositions that the human capital of an organization develops to interact and master the conscious or unconscious use of Information, Communication and Collaboration Technologies, as referred to the technological appropriation and incubation for innovation in services, processes or products that generate benefits and growth for the company and are strictly based on the collaborative work of its staff”[14]
3.2. Technological Competencies Profile
4. Method
4.1. First Moment: Quantitative Evaluation
- Technological competencies
- Internal environment and communication
- External environment and communication
- Training
- Innovation factors
4.2. Second Moment: Qualitative Evaluation
5. Results
5.1. Results of the Quantitative Evaluation
5.2. Results of the Qualitative Evaluation
6. Discussion
- To seek training and updating in economic and administrative oriented topics for the integrative development of companies.
- To train and qualify staff in the “expert” management of the areas in which they participate, considering postgraduate studies where applied projects are developed, and problems that need attention in the sector.
- To make efforts to establish and strengthen collaboration networks between government–university–industry–society.
- To propose training programs in mixed modalities to take advantage of online training.
- To develop a renewable energies cluster to consolidate a network that promotes the sector in the state.
- To provide follow-up to planning processes and guidance within the company, but consider working abroad.
- To develop social impact programs that can change the perception of renewable energies in the state by showing the benefits they offer to the community and its scope of services, with the hope of increasing the demands of products and services.
- To ally with education, development, and research organizations and institutions to establish joint projects with regional, national, and global impact, promoting the generation of technology-based companies.
- To establish medium and long-term development projects in collaboration with the government to generate renewable energy in areas with electrical service needs, by taking advantage of natural resources.
- To analyze the potential of natural resources for the generation of renewable energies and the reduction of the state’s natural gas dependence.
- To be constantly informed of federal and state public policies, development plans, and mixed funds to support renewable energies projects.
- To prioritize the creation of a department or an external service responsible of implementing technological dissemination strategies and keeping digital marketing, technological culture, and corporate image updated.
- To socialize the success of renewable energy projects, at a state and global level, with the intention of changing the perception of products and services in the industry.
- To establish collaboration networks with other industry sectors, promoting the advantages of incorporating technology and renewable energies to attract potential clients.
7. Conclusions
8. Future Work
8.1. Development of a General Structure of the Technological Competence Profile for the Evaluation of Various Industrial Sectors in a Standardized Way
8.2. Propose Policies and Strategies to Promote the Renewable Energy Sector in the State
Author Contributions
Funding
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Asociación Mexicana de la Industria de Tecnologías de Información (AMITI); Cámara Nacional de la Industria Electrónica de Telecomunicaciones y Tecnologías de la Información (CANIETI); Fundación Mexico Digital (FMD). Visión México 2020: Políticas Públicas en Materia de Tecnologías de Información y Comunicaciones Para Impulsar la Competitividad de México. 2006. Available online: http://globaltrends.thedialogue.org/publication/vision-mexico-2020-politicas-publicas-en-materia-de-tecnologias-de-informacion-y-comunicaciones-para-impulsar-la-competitividad-de-mexico/ (accessed on 27 January 2022).
- Instituto Federal de Telecomunicaciones (IFT). Adopción de Las TIC y Usos de Internet en México: Impacto de Las Características Sociodemográficas de Los Usuarios. 2018. Available online: http://www.ift.org.mx/sites/default/files/contenidogeneral/estadisticas/adopciondelasticyusosdeinternetenmexico.pdf (accessed on 1 May 2020).
- eCompetence. European e-Competence Framework. 2016. Available online: http://www.ecompetence.eu (accessed on 1 May 2020).
- Select. Select en tus Decisiones TIC; Select: Anaheim, CA, USA, 2005. [Google Scholar]
- Reynaga Obregón, S. (Ed.) Educación, Trabajo, Ciencia y Tecnología, Consejo Mexicano de Investigación Educativa; COMIE: Alcaldía Cuauhtémoc, México, 2003. [Google Scholar]
- Porter, M.E. Ventaja Competitiva: Creación y Sostenimiento de un Desempeño Superior; Compañía Editorial Continental: Mexico City, Mexico, 2002. [Google Scholar]
- Carrillo, J.; Villavicencio, D.; De los Santos, S.; Plascencia, I. Made in Mexico: Desafíos Para la Ciencia e Innovación en la Frontera Norte; El Colegio de la Frontera Norte-COMECSO: Tijuana, Mexico, 2016. [Google Scholar]
- Carrillo, J.; Gomis, R. Los retos de las maquiladoras ante la pérdida de competitividad. Comer. Exter. 2003, 53, 318–327. [Google Scholar]
- World Information Technology and Services Alliance (WITSA). Witsa. Available online: https://witsa.org/ (accessed on 14 January 2022).
- Buenrostro Mercado, H.E. Experiencias y Desafíos en la Apropiación de las TICs por las PyME Mexicanas; Fondo de Información y Documentación para la Industria (INFOTEC): Aguascalientes, México, 2013. [Google Scholar]
- Instituto PyME. Acceso a la Tecnología; Instituto PyME: Buenos Aires, Argentina, 2015. [Google Scholar]
- Gobierno del Estado de Baja California (GOB-BC). Programa Especial de Energía 2015–2019; Gobierno del Estado de Baja California (GOB-BC): Mexicali, Mexico, 2015. [Google Scholar]
- Subsecretaría de Planeación y Transición Energética. Prospectiva de Talento del Sector Energía. Secretaría de Energía. 2015. Available online: https://www.gob.mx/cms/uploads/attachment/file/54344/Prospectiva_de_Talento_Volumen_6_27_01_16.pdf (accessed on 1 May 2020).
- Arballo, N.C.; Nuñez, M.E.C.; Tapia, B.R. Technological Competences: A Systematic Review of the Literature in 22 Years of Study. Int. J. Emerg. Technol. Learn. 2019, 14, 1–30. [Google Scholar] [CrossRef]
- Candolfi Arballo, N.; Chan Núñez, M.E. Construcción conceptual de las competencias tecnológicas a partir de un análisis cronológico de su significado y su aplicación. De lo educativo a lo empresarial. In Tecnologías Emergentes en la Educación: El Ámbito Educativo en la Era Digital; Pearson: London, UK, 2017; pp. 27–55. [Google Scholar]
- ACTIC. Generalitat de Catalunya. Available online: https://web.gencat.cat/ca/inici (accessed on 18 May 2017).
- Gonzalez, J.A. Tecnología y percepción social: Evaluar la competencia tecnológica. Estud. Sobre Las Cult. Contemp. 1999, 9, 155–165. [Google Scholar]
- Cabello, R.; Renzo, M. Tecnologías interactivas en la educación. In Competencias Tecnológicas y Capacitación Para la Apropiación de las Tecnologías; Buenos, A., Ed.; Universidad Nacional de General Sarmiento: Los polvorines, Argentina, 2012. [Google Scholar]
- Tishman, S.; Andrade, A. Thinking Dispositions: A Review of Current Theories, Practices, and Issues; Harvard University: Cambridge, MA, USA, 1999. [Google Scholar]
- Hernández Sampieri, R.; Fernández Collado, C.; Baptista Lucio, P. Metodología de la Investigación; McGraw Hill: New York, NY, USA, 2011. [Google Scholar]
- Barraza Macías, A. Cómo valorar un coeficiente de confiabilidad. Investig. Educ. Duranguense 2007, 6, 6–10. [Google Scholar]
- Fundación Tecnologías de la Información (FTI)-Asociación de Empresas de Electrónica, Tecnologías de la Información, Telecomunicaciones y Contenidos Digitales de España (AMETIC). Competencias Profesionales ETIC en Mercados Emergentes, Madrid, España, PAFET 6. 2012. Available online: https://ametic.es/sites/default/files//pafet_6_0.pdf (accessed on 27 January 2022).
- Lawshe, C.H. A quantitative approach to content validity. Pers. Psychol. 1975, 28, 563–575. [Google Scholar] [CrossRef]
- Tristán-López, A. Modificación al modelo de Lawshe para el dictamen cuantitativo de la validez de contenido de un instrumento objetivo. Av. En Med. 2008, 6, 37–48. [Google Scholar]
- Candolfi-Arballo, N.; Rodríguez-Tapia, B.; Avitia-Carlos, P.; Vega, Y.; Hualde-Alfaro, A. Evaluation of a Theoretical Model for the Measurement of Technological Competencies in the Industry 4.0. In Innovative Applications in Smart Cities; Taylor & Francis CRC Press: Abingdon, UK, 2021; pp. 203–215. [Google Scholar]
- Abela, D.J.A. Las Técnicas de Análisis de Contenido: Una Revisión Actualizada; Andaluces Studies Center Foundation: Sevilla, Spain, 2002; pp. 1–34. [Google Scholar]
Technology Knowledge | ||
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Theoretical framework based on the European e-Competence Framework (e-CF), the Skills Framework for the Information Age (SFIA), the Information Technology Infrastructure Library (ITIL) and emerging markets | ||
Knowledge | Abilities | Attitudes |
Software and hardware |
| Communicative Purposeful Integrative Leadership Proactive Promotive Reflexive |
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Mobile applications |
| Participatory Empathetic Proactive Communicative |
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Innovation management |
| Committed Confidant Cordial |
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Technological change management |
| Visionary Responsible Ethical |
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Renewable Energies Industry Sector Knowledge | ||
Analysis of government institutions and their dispositions regarding renewable energies in an international, national and regional framework; and perception of local higher education and research institutions by a pre-selected group of experts. | ||
Knowledge | Abilities | Attitudes |
Quality of service |
| Committed Ethical Planning Visionary |
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Industry and government |
| Cooperative Participatory Leadership Communicative |
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Industry and I + D |
| Cooperative Integrative Participatory Reflexive |
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Exportation industry |
| Confidant Cordial Leadership Promotive Respectful Tolerant |
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Business Innovation Knowledge | ||
Based on a theoretical analysis of administrative trends of innovation and of trends of SME’s development | ||
Knowledge | Abilities | Attitudes |
Boost to human capital |
| Communicative Confidant Cordial Leadership Planning Solidary |
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Digital marketing |
| Participative Proactive Communicative |
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Collaboration and cooperation |
| Proactive Purposeful Reflexive Ethical Leadership |
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Effective communication |
| Respectful Tolerant Patient Ethical Leadership |
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Border and Transnational Context Knowledge | ||
Based on human, social, cultural, and geographic considerations of the Mexican northern border | ||
Knowledge | Abilities | Attitudes |
Educational |
| Persevering Critical Proactive |
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Geographical and environmental |
| Reflexive Proactive Encouraging Leadership |
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Social |
| Proactive Participative Reflexive Purposeful Ethical Empathetic |
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Economic |
| Purposeful Leadership Planning Ethical Empathetic |
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Categories | Subcategories |
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Aspects concerning the renewable energies industry | Main renewable energies projects or businesses in the state/country/transborder region |
Renewable energies industry’s growth barriers | |
Renewable energies industry’s strengths in Baja California | |
Incentives for renewable energies SMEs | |
Renewable energies clusters in Baja California | |
Industry-government-higher education institutions relation | |
Aspects concerning renewable energies professionals and leaders | Competencies and expectations for renewable energies businesses’ leaders |
Educational offer | |
Opportunities for participation and development of specialists in renewable energy | |
Sociocultural aspects of renewable energies | Renewable energies’ representation in Baja California |
Benefits and social impact of projects in vulnerable areas | |
Globalization of the renewable energies industry |
Dimension | Indicators | Number of Responses | ||||
---|---|---|---|---|---|---|
Never | Rarely | Sometimes | Often | Always | ||
Technological competencies | 1–11 | 11 | 19 | 20 | 49 | 44 |
Internal environment and communication | 12–37 | 74 | 34 | 61 | 104 | 65 |
External environment and communication | 38–59 | 75 | 35 | 43 | 67 | 66 |
Training | 60–71 | 69 | 14 | 15 | 33 | 25 |
Innovation factors | 72–79 | 47 | 5 | 11 | 19 | 22 |
Dimension | Technological Competencies Profile Total Score | Answers’ Results | Percentages Obtained by the Renewable Energies Sector |
---|---|---|---|
Technological competencies | 715 | 44 | 6.15% |
Internal environment and communication | 1690 | 65 | 3.84% |
External environment and communication | 1430 | 66 | 4.61% |
Training | 780 | 25 | 3.20% |
Innovation factors | 520 | 22 | 4.23% |
Total | 5135 | 222 | 4.32% |
Category | Sub-Category | Findings |
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Renewable energies industry | Main projects or businesses | Most experts regarded the wind power park in Rumorosa, Mexicali as the most representative and important project in the state. They also acknowledged the efforts that SENER and CONACYT have done to promote renewable energies centers such as CemiGEO, with CICESE as its institutional leader. |
Growth barriers |
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Strengths |
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Incentives for SMEs |
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Clusters |
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Industry-government-higher education relation |
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Renewable energies professionals and leaders | Competencies and expectations | Experts identify three types of competencies that business leaders are required to have:
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Educational offer | Experts identify a low percentage of higher education institutions that participate in collaborative projects with renewable energies businesses. The Engineering Institute of the Autonomous University of Baja California (UABC) is recognized for participating in real impact projects, but more needs to be done to integrate more educational institutions and their students. | |
Opportunities for participation and development |
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Sociocultural aspects | Representation | Social image of renewable energies is not optimal in the state. There is resistance in the community to install renewable energies equipment due to bad experiences with businesses, lack of trust in the government and its ability to manage resources responsibly, and general disinformation about renewable energies. |
Benefits and social impact | There is a very small and limited number of renewable energies application projects in vulnerable areas, such as one from the Engineering Institute of UABC. However, there is still a significant lack of support in these communities. | |
Globalization | Experts call for a change of perspective from business that understands their advantage in hiring contractors, consultants, and human capital, to developing and designing innovative products. This calls for higher investment in development centers and in the commercialization of national products. |
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Share and Cite
Candolfi-Arballo, N.; Hualde-Alfaro, A.; Espinosa-Díaz, Y.; Avitia-Carlos, P.; Rodríguez-Tapia, B. The Evaluation of Technological Competencies among Leaders of the Renewable Energy Industry: The Case of SMEs in Baja California, Mexico. Energies 2022, 15, 5946. https://doi.org/10.3390/en15165946
Candolfi-Arballo N, Hualde-Alfaro A, Espinosa-Díaz Y, Avitia-Carlos P, Rodríguez-Tapia B. The Evaluation of Technological Competencies among Leaders of the Renewable Energy Industry: The Case of SMEs in Baja California, Mexico. Energies. 2022; 15(16):5946. https://doi.org/10.3390/en15165946
Chicago/Turabian StyleCandolfi-Arballo, Norma, Alfredo Hualde-Alfaro, Yessica Espinosa-Díaz, Patricia Avitia-Carlos, and Bernabé Rodríguez-Tapia. 2022. "The Evaluation of Technological Competencies among Leaders of the Renewable Energy Industry: The Case of SMEs in Baja California, Mexico" Energies 15, no. 16: 5946. https://doi.org/10.3390/en15165946
APA StyleCandolfi-Arballo, N., Hualde-Alfaro, A., Espinosa-Díaz, Y., Avitia-Carlos, P., & Rodríguez-Tapia, B. (2022). The Evaluation of Technological Competencies among Leaders of the Renewable Energy Industry: The Case of SMEs in Baja California, Mexico. Energies, 15(16), 5946. https://doi.org/10.3390/en15165946