University certificate
Accreditation/Membership
The world's largest faculty of engineering”
Introduction to the Program
Un programa exhaustivo y 100% online, exclusivo de TECH y con una perspectiva internacional respaldada por nuestra afiliación con Northeast Sustainable Energy Association”
El desarrollo de instalaciones fotovoltaicas exige una combinación precisa de conocimientos técnicos, capacidad de análisis y dominio de la normativa eléctrica para garantizar proyectos seguros, eficientes y económicamente viables. La creciente penetración de la energía solar ha incrementado la complejidad de los sistemas, obligando a los profesionales a comprender el comportamiento de los módulos, las condiciones del emplazamiento, los criterios de dimensionado y los requisitos de conexión a red. En este contexto, resulta imprescindible contar con especialistas capaces de diseñar, evaluar y gestionar instalaciones solares con estándares profesionales acordes a las necesidades actuales del sector.
Este programa universitario aborda estos retos mediante un plan de estudios riguroso que abarca el diseño de instalaciones residenciales, industriales y de gran escala; el dimensionamiento de sistemas; la selección de componentes como paneles, inversores y baterías; la normativa eléctrica vigente; y los estudios económicos indispensables para evaluar la viabilidad de cada proyecto. Asimismo, profundiza en la evaluación de recursos solares, la planificación de obras, la puesta en marcha y el mantenimiento, junto con el análisis de casos reales y el uso de herramientas avanzadas de simulación para reforzar la aplicabilidad profesional.
La Postgraduate diploma en Development of Photovoltaic Installations de TECH Global University se imparte en modalidad 100 % online, lo que proporciona total flexibilidad para compatibilizar su estudio con otras responsabilidades. Su metodología Relearning permite consolidar el conocimiento a través de la repetición programada y progresiva de los contenidos, favoreciendo una comprensión profunda y una aplicación eficaz en proyectos reales.
Por lo tanto, gracias a que TECH Global University es miembro de Northeast Sustainable Energy Association (NESEA), el profesional contará con materiales especializados, guías y ejercicios para el estudio y práctica de energías renovables. A su vez, podrá asistir a eventos académicos, recibir descuentos en publicaciones y conectarse con una red internacional de investigadores, reforzando el conocimiento en este campo.
Domina el diseño, la instalación y la gestión de sistemas fotovoltaicos aplicados a proyectos residenciales, industriales y a gran escala”
Esta Postgraduate diploma en Development of Photovoltaic Installations contiene el programa universitario más completo y actualizado del mercado. Sus características más destacadas son:
- El Desarrollo de casos prácticos presentados por expertos en Ingeniería
- Los contenidos gráficos, esquemáticos y eminentemente prácticos con los que están concebidos recogen una información científica y práctica sobre aquellas disciplinas indispensables para el ejercicio profesional
- Los ejercicios prácticos donde realizar el proceso de autoevaluación para mejorar el aprendizaje
- Su especial hincapié en metodologías innovadoras
- Las lecciones teóricas, preguntas al experto, foros de discusión de temas controvertidos y trabajos de reflexión individual
- La disponibilidad de acceso a los contenidos desde cualquier dispositivo fijo o portátil con conexión a internet
Participa en Masterclasses con expertos internacionales y fortalece tu perfil profesional global”
Incluye en su cuadro docente a profesionales pertenecientes al ámbito de la Ingeniería que vierten en este programa universitario la experiencia de su trabajo, además de reconocidos especialistas de sociedades de referencia y universidades de prestigio.
Su contenido multimedia, elaborado con la última tecnología educativa, permitirá al profesional un aprendizaje situado y contextualizado, es decir, un entorno simulado que proporcionará un estudio inmersivo programado para entrenarse ante situaciones reales.
El diseño de este programa universitario se centra en el Aprendizaje Basado en Problemas, mediante el cual el alumno deberá tratar de resolver las distintas situaciones de práctica profesional que se le planteen a lo largo del curso académico. Para ello, el profesional contará con la ayuda de un novedoso sistema de vídeo interactivo realizado por reconocidos expertos.
Gestiona y optimiza sistemas solares, desde el diseño hasta la integración en red, con herramientas y casos prácticos reales"
Consolida tu experiencia en energía fotovoltaica y lidera proyectos sostenibles con visión técnica y estratégica internacional"
Syllabus
By means of this university program, engineers will have a solid understanding of the fundamentals of solar photovoltaic energy. The syllabus will delve into aspects ranging from selection criteria for photovoltaic modules or technical parameters of batteries to electrical protections in direct current. In line with this, the syllabus will delve into wiring in alternating current and low voltage, which will enable graduates to prevent electrical risks such as short circuits or electric shocks. In addition, during the course of the program, professionals will acquire the skills to properly select the components of photovoltaic systems.
You will incorporate into your practice the most sophisticated strategies for installing photovoltaic systems and ensure that they are carried out efficiently"
Module 1. Direct Current Photovoltaic Installations
1.1. Solar Cell Technologies
1.1.1. Solar Technologies
1.1.2. Evolution by Technology
1.1.3. Comparative Analysis of the main Commercial Technologies
1.2. Photovoltaic Modules
1.2.1. Electrical Technical Parameters
1.2.2. Other Technical Parameters
1.2.3. Technical Regulatory Framework
1.3. Photovoltaic Module Selection Criteria
1.3.1. Technical Criteria
1.3.2. Economic Criteria
1.3.3. Other Criteria
1.4. Optimizers and Regulators
1.4.1. Optimizers
1.4.2. Regulators
1.4.3. Advantages and Disadvantages
1.5. Battery Technologies
1.5.1. Types of Cells
1.5.2. Evolution by Technology
1.5.3. Comparative Analysis of the main Commercial Technologies
1.6. Technical Parameters of Batteries
1.6.1. Technical Parameters of Lead-Acid Batteries
1.6.2. Technical Parameters of Lithium Batteries
1.6.3. Durability, Degradation and Efficiency
1.7. Batteries Selection Criteria
1.7.1. Technical Criteria
1.7.2. Economic Criteria
1.7.3. Other Criteria
1.8. Direct Current Electrical Protections
1.8.1. Protection Against Direct and Indirect Contacts
1.8.2. Protection Against Overvoltage
1.8.3. Other Protections
1.8.3.1. Grounding, Insulation, Overload and Short-Circuit Systems
1.9. Direct Current Wiring
1.9.1. Type of Wiring
1.9.2. Wiring Selection Criteria
1.9.3. Dimensioning of Wiring, Conduits, Cable Ducts, Cable Boxes
1.10. Fixed and Solar Tracking Structures
1.10.1. Types of Structures with Solar Tracking. Materials
1.10.2. Types of Structures with Solar Tracking. One or Two Axes
1.10.3. Advantages and Disadvantages of the Type of Solar Tracking
Module 2. Alternating Current Photovoltaic Installations
2.1. Inverter Technology
2.1.1. The Inverter Technology
2.1.2. Evolution by Technology
2.1.3. Comparative Analysis of the main Commercial Technologies
2.2. Technical Parameters of the Inverters
2.2.1. Electrical Technical Parameters
2.2.2. Other Technical Parameters
2.2.3. International Normative Framework
2.3. Inverters Selection Criteria
2.3.1. Technical Criteria
2.3.2. Economic Criteria
2.3.3. Other Criteria
2.4. Transformer Technology
2.4.1. Classification of Transformer Technologies
2.4.2. Evolution by Technology
2.4.3. Comparative Analysis of the main Commercial Technologies
2.5. Technical Parameters of Transformers
2.5.1. Electrical Technical Parameters
2.5.2. High-Voltage Switchgear: Switches, Disconnectors and Self-Operated Valves
2.5.3. International Normative Framework
2.6. Transformers Selection Criteria
2.6.1. Technical Criteria
2.6.2. Economic Criteria
2.6.3. Other Criteria
2.7. Alternating Current (AC) Electrical Protections
2.7.1. Protection Against Indirect Contacts
2.7.2. Protection Against Overvoltage
2.7.3. Other Protections: Grounding, Overload and Short-Circuit Systems
2.8. Alternating Current and Low Voltage Wiring
2.8.1. Type of Wiring
2.8.2. Wiring Selection Criteria
2.8.3. Wire Sizing. Conduits, Manholes
2.9. High-Voltage Wiring
2.9.1. Type of Wiring, Poles
2.9.2. Wiring Selection Criteria, Layouts, Poles, Declaration of Public Utility
2.9.3. Wire Sizing
2.10. Civil Works
2.10.1. Civil Works
2.10.2. Accesses, Rainwater Outlets Drainage, Enclosures, etc.
2.10.3. Electrical Evacuation Networks. Transport Capacity
Module 3. Assembly, Operation and Maintenance of Photovoltaic Plants
3.1. Assembly of Photovoltaic Plants
3.1.1. Health and Safety
3.1.2. Selection of Equipment on the Market
3.1.3. Incident Management
3.2. Commissioning of Photovoltaic Plants. Technical Aspects
3.2.1. Commissioning Operations
3.2.2. Grid Codes. Control Center
3.2.3. Incident Management. Thermography, Electroluminescence, Certifications
3.3. Commissioning of Self-Consumption Installations. Technical Aspects
3.3.1. Commissioning Operations
3.3.2. Monitoring
3.3.3. Incident Management. Thermography, Electroluminescence, Certifications
3.4. Commissioning of Off-Grid Installations. Technical Aspects
3.4.1. Commissioning Operations
3.4.2. Monitoring
3.4.3. Incident Management
3.5. Operation and Maintenance Strategies for Photovoltaic Plants
3.5.1. Operation Strategies
3.5.2. Maintenance Strategies. Fault Detection
3.5.3. Internal and External Incident Management
3.6. Operation and Maintenance Strategies for Self-Consumption Installations without Batteries.
3.6.1. Operation Strategies. Surplus Management
3.6.2. Maintenance Strategies. Fault Detection
3.6.3. Internal and External Incident Management
3.7. Operation and Maintenance Strategies for Self-Consumption Installations with Batteries.
3.7.1. Operation Strategies. Surplus Management
3.7.2. Maintenance Strategies. Fault Detection
3.7.3. Internal and External Incident Management
3.8. Operation and Maintenance Strategies for Stand-Alone Installations
3.8.1. Operation Strategies
3.8.2. Maintenance Strategies. Fault Detection
3.8.3. Internal and External Incident Management
3.9. Health and Safety during Assembly, Operation and Maintenance
3.9.1. Working at Heights. Roofs, Electric Poles
3.9.2. High Voltage Works
3.9.3. Other Works
3.10. As Built-Project Documentation
3.10.1. Commissioning Documents
3.10.2. Final Certifications
3.10.3. Modifications and As-Built Project
TECH provides you with a quality and flexible university program, which you can access from any device with an Internet connection. Enroll now!”
Postgraduate Diploma in Development of Photovoltaic Installations
This Postgraduate Diploma in Development of Photovoltaic Installations created by TECH Global University is a specialized program in one of the most dynamic and relevant fields of the energy sector. This program, taught completely online, will provide you with a comprehensive and advanced understanding of the development of photovoltaic projects, ranging from technical and engineering aspects, to the management and financing of solar projects. Here, you will gain in-depth knowledge of the fundamental principles of solar photovoltaics, including the physics of semiconductors and the operation of solar cells. In addition, you will explore the different photovoltaic technologies available on the market, such as monocrystalline, polycrystalline and thin-film modules, providing a solid foundation for selecting the most suitable components according to the specific needs of each project. Finally, you will address the design and development of photovoltaic systems, ranging from small residential installations to large commercial solar plants. You will learn to use specialized tools and software for system design and simulation, ensuring that projects are efficient, cost-effective and sustainable.
Become a specialist in the development of photovoltaic installations
The online modality of the course offers unparalleled flexibility, allowing you to study at your own pace and from any location. This interactive and dynamic learning structure facilitates the acquisition of knowledge and skills in an effective way, adapting to your needs and schedule. Upon completion, you will be prepared to take on leadership roles in the solar energy sector. You will be able to work in engineering firms, energy consultancies, government agencies and NGOs, contributing to the development and implementation of innovative and sustainable solar projects. Your ability to design, manage and optimize photovoltaic projects will make you a highly valued professional in a growing and constantly evolving job market. This Postgraduate Diploma in Development of Photovoltaic Installations not only provides a high-quality education, but also opens doors to new career opportunities in a field that is essential for the sustainable future of the planet. Enroll now and take an important step towards a successful and rewarding career in the renewable energy sector. We look forward to seeing you!