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imagen-Energy Systems and Smart Grids Engineering

Program / Energy Systems and Smart Grids Engineering

Is taught in: UPIEM

Objective

To train professionals capable of designing, planning, projecting, constructing, operating, and innovating energy systems and smart grids based on modern technologies to optimize efficiency, as well as monitoring and control of energy resources and associated infrastructure, considering the environment and social responsibility.

Candidate's Profile

  • Knowledge of basic sciences (Mathematics, Physics, Chemistry).
  • Basic measurements of physical variables.
  • Proficiency in basic digital skills.
  • Basic programming skills.
  • Scientific and technological aptitude.

Graduate's profile

Is a professional who acts ethically, environmentally sensitive, and socially responsible, with skills in energy systems, generation, and distribution of energy. Has the ability to generate, develop and evaluate projects, products, and services in the energy sector, considering the sustainable management of resources, through life cycle analysis, energy efficiency, and implementing strategies for their optimal use in the economic, social, and environmental fields.

Academic Requirements

The requirements to become a student at the Institute are:

  1. To comply with the academic background and other requirements indicated in the respective call for applications.
  2. To take the admission exam for the higher level.
  3. To be selected for admission.

Work Field

Graduates of the Energy Systems and Smart Grid Engineering program will be able to work in public and private institutions:

  • Identifying, conceptualizing and defining what is an energy system and a smart grid, as well as the necessary conditions for its development.
  • Participating in the analysis of urban energy consumption in different energy tariffs.
  • Developing innovative solutions to optimize the use of energy resources on the demand side.
  • Developing distributed generation energy systems.
  • Developing smart grids and microgrids.
  • Developing solutions for the control and improvement of energy quality.
  • Developing monitoring and control systems.
  • Participating in the development of cyber-secure energy systems.

Curriculum Map

Check the list of subjects, credits and total hours of the program in:

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