EdX

Distribución de la energía eléctrica (edX)

Distribución de la energía eléctrica (edX)

Aprende las formas en que la energía eléctrica se distribuye al usuario final por medio de la infraestructura eléctrica existente. Conoces los procesos que se requieren para llevar la energía eléctrica desde el lugar donde se genera (plantas eléctricas) hasta el lugar donde la necesitas?, ¿sabes cómo funciona una red de distribución? En este curso en línea obtendrás las respuestas, ya que conocerás las formas en las que la energía eléctrica se distribuye al usuario final por medio de la infraestructura existente.

Class Deals by MOOC List - Click here and see EdX's Active Discounts, Deals, and Promo Codes.

Los recientes mercados eléctricos en transición, las nuevas reformas, el aumento de la población, así como las nuevas tecnologías son algunos factores que han generado una gran demanda de electricidad y es indispensable contar con profesionales que comprendan la importancia de estos cambios.
A través del estudio de estos temas comprenderás:

  • Los fundamentos de la ingeniería eléctrica
  • Los elementos mecánicos de soporte
  • Los elementos de una subestación eléctrica, el proceso de transformación de alta tensión a baja tensión
  • El funcionamiento de las líneas de distribución, entre otros temas de relevancia

En resumen, tomar este curso de ingeniería eléctrica representa una gran oportunidad para aprender todos los procesos tecnológicos y de ingeniería que hay detrás cada vez que utilizas la energía eléctrica.

Syllabus

Tema 1. Introducción a los sistemas en corriente alterna

  1. Antecedentes de los sistemas de distribución de energía eléctrica
  2. Fundamentos de la corriente alterna
  3. Análisis de potencia en corriente alterna
  4. Circuitos trifásicos

Tema 2. Fundamentos de los sistemas de distribución

  1. Diagramas unifilares y tipos de cargas
  2. Clasificación de los sistemas de distribución
  3. Estructura de las redes de distribución
  4. Tarifas

Tema 3. Componentes de los sistemas de distribución

  1. Estructuras, conductores y aisladores
  2. Subestaciones eléctricas
  3. Transformadores
  4. Coordinación de aislamiento

Tema 4. Características de las cargas

  1. Planeación del sistema de distribución
  2. Fundamentos de la demanda
  3. Factores de demanda
  4. Perfiles y factores de demanda

Tema 5. Generación distribuida

  1. Introducción a la generación distribuida
  2. Instalaciones solares
  3. Instalaciones eólicas
  4. Cogeneración
Go to Class
MOOC List is learner-supported. When you buy through links on our site, we may earn an affiliate commission.

Related Courses

Circuitos Eléctricos en Corriente Alterna (edX) EdX
Galileo University,GalileoX

Circuitos Eléctricos en Corriente Alterna (edX)

Curso introductorio de análisis de circuitos resistivos en AC. Aprende la base fundamental de Instalaciones Eléctricas. Este curso trata la teoría básica de circuitos eléctricos en corriente alterna. Un sólido conocimiento de esta teoría es clave para diseñar instalaciones eléctricas y sistemas de potencia.

Self Paced
Self-Paced
Powering Resilient Communities: A Holistic Approach to Food, Energy, and Water Security (edX) EdX
University of Alaska Fairbanks,AlaskaX

Powering Resilient Communities: A Holistic Approach to Food, Energy, and Water Security (edX)

A research-based course on resilient renewable energy solutions, with an emphasis on microgrids, and Food, Energy, and Water (FEW) security. This course provides research-based and on-the-ground tools for community planners, grid designers, and business leaders to improve and implement stronger and more resilient renewable energy systems in Arctic communities.

Self Paced
Self-Paced
Fundamentals of particle accelerator technology (NPAP MOOC) (Coursera) Coursera
Lund University

Fundamentals of particle accelerator technology (NPAP MOOC) (Coursera)

Did you know that particle accelerators play an important role in many functions of todays society and that there are over 30 000 accelerators in operation worldwide? A few examples are accelerators for radiotherapy which are the largest application of accelerators, altogether with more than 11000 accelerators worldwide. These accelerators range from very compact electron linear accelerators with a length of only about 1 m to large carbon ion synchrotrons with a circumference of more than 50 m and a huge rotating carbon ion gantry with a weight of 600 tons!

Sep 7th 2026
5-12 Weeks
Signals and Systems, Part 1 (edX) EdX
IIT Bombay,IITBombayX

Signals and Systems, Part 1 (edX)

This course provides the basic toolkit for any signal processing application - the abstraction of signals and systems, from the point of view of analysis and characterization. We encounter signals and systems extensively in our day-to-day lives, from making a phone call, listening to a song, editing photos, manipulating audio files, using speech recognition softwares like Siri and Google now, to taking EEGs, ECGs and X-Ray images.

No sessions available
5-12 Weeks
AC and Switching Circuits (edX) EdX
National University of Singapore,NUS

AC and Switching Circuits (edX)

In this course, you will learn all about circuits with alternating current (AC). The course shows how to design and analyse AC circuits, and concepts like phasors and power factor are explained. We also cover transformers, fuses, relays, and the use of transistors as switches. The course is the second in our series on electronics and a working knowledge of DC circuits is assumed.

Self Paced
Self-Paced
Electricity and Magnetism: Magnetic Fields and Forces (edX) EdX
MIT,MITx

Electricity and Magnetism: Magnetic Fields and Forces (edX)

Learn how charges create and move in magnetic fields and how to analyze simple DC circuits in this introductory-level physics course. Electricity and Magnetism dominate much of the world around us – from the most fundamental processes in nature to cutting edge electronic devices. Electric and magnet fields arise from charged particles. Charged particles also feel forces in electric and magnetic fields. Maxwell’s equations, in addition to describing this behavior, also describes electromagnetic radiation.

Self Paced
Self-Paced
Energy Economics and Policy (edX) EdX
MIT,MITx

Energy Economics and Policy (edX)

Learn the economics of real-world energy markets, and how various policies can address the impact of rising global energy demand on the environment and climate. With renewable sources playing an increasing role in meeting global energy demand and mitigating climate change, electric power systems and the related markets are changing. To prepare for a career in the future energy landscape, industry professionals, policymakers, and academics must understand these changes and develop specific, relevant skills to drive this energy transition within the necessary timeframe. In this course, you will learn to apply economic and socio-political analysis to real-world regulatory policy questions in a set of extremely important, interrelated energy markets.

Sep 17th 2024
5-12 Weeks
Incorporating Renewable Energy in Electricity Grids (edX) EdX
Imperial College London,ImperialX

Incorporating Renewable Energy in Electricity Grids (edX)

Learn how to manage high shares of variable renewable electricity sources to achieve cost-effective and reliable electricity supplies. This introductory course, delivered by Ieading academics from Imperial College London, with technical input and contributions from the National Energy Renewable Lab (Golden, Colorado), will discuss what challenges variable output renewables pose to the achievability of a reliable, stable electricity system, how these challenges can be addressed and at what costs.

Self Paced
Self-Paced
Electricity Distribution (edX) EdX
National University of Singapore,NUS

Electricity Distribution (edX)

This course is designed like a field trip. Let’s travel together around the world, visiting solar farms, substations, and transformer rooms! Learn how to identify major components in electrical substations, learn about 3-phase electricity, and all about the ins and outs of electrical grids. We cover generation, transmission, and distribution. Welcome!

Self Paced
Self-Paced