EdX

Electricity Distribution (edX)

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!

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

In this class, learners will learn all about electricity infrastructure, including electricity generation, transmission, use and safety. The focus is on actual installations, so students can learn about electrical substations, 3-phase power distribution, typical power plant voltages, large transformers, as well as single-phase, split-phase, and 3-phase circuit breaker boxes and wiring setups found around the world. Learners will understand the importance of AC in an electricity grid, as well as grounding/earthing, pole transformer setups, as well as residual current/ground fault interrupt and safety setups and lightning protection.

What you'll learn
At the end of this MOOC, the learner will be able to discuss:

  • Wire gauge
  • Why AC is generally used for transmission instead of DC
  • Why three phase is used and how to calculate line and phase voltages
  • Circuit breakers, metering, fuses, lightning rods, residual current/GFCI devices, and grounding rods
  • Star and delta transformers and electrical substation layout
  • The electricity grid, and how it is generally designed
  • Split phase, single phase, 2-phase, and 3-phase consumer units/breaker boxes
  • How power is injected into the grid
  • Typical grid voltages and power plant capacities
  • Grid challenges with renewables, power output from solar farms

Syllabus

Week 1: Introduction (4 videos)
Week 2: Circuit Breakers and Residual Current Devices (7 videos)
Week 3: Polyphase power (6 videos)
Week 4: 3-phase transformers (3 videos)
Week 5: Split-phase power (3 videos)
Week 6: Electricity generation (5 videos)
Week 7: Electricity distribution (6 videos)

Go to Class
MOOC List is learner-supported. When you buy through links on our site, we may earn an affiliate commission.

Related Courses

Mercados de energía: oportunidades de negocio (edX) EdX
Tecnológico de Monterrey,TecdeMonterreyX

Mercados de energía: oportunidades de negocio (edX)

Aprende sobre mercados y regulaciones energéticas en América Latina y en especial en México, que permiten definir oportunidades para diseñar negocios de energía. ¿Conoces las oportunidades de negocio que te ofrecen los mercados de energía eléctrica y otros mercados energéticos?, ¿sabes cómo surgieron dichos mercados? En este curso podrás encontrar las respuestas detalladas estas preguntas.

Self Paced
Self-Paced
Transmisión de energía eléctrica (edX) EdX
Tecnológico de Monterrey,TecdeMonterreyX

Transmisión de energía eléctrica (edX)

Aprende cómo se transmite y se distribuye la electricidad y cómo este conocimiento puede ser aplicado para maximizar la transmisión de energía eléctrica. Caso de estudio en el sistema eléctrico mexicano. El conocer la manera en que funciona el sistema eléctrico mexicano como caso de estudio genera competencias importantes en el mundo actual y permite tener conocimientos de distribución eléctrica que se pueden usar en otros países.

Self Paced
Self-Paced
Cadena de bloques e internet de las cosas (edX) EdX
Galileo University,GalileoX

Cadena de bloques e internet de las cosas (edX)

Con el uso de las tecnologías digitales emergentes, el proceso de transición energética puede ser más eficiente, seguro y sostenible. Entre estas tecnologías, se encuentra blockchain e internet de las cosas. Por lo que, en este curso, aprenderás sobre los fundamentos de estas tecnologías y como impactan la cadena de valor del sector eléctrico.

Self Paced
Self-Paced
Electricity and Magnetism: Maxwell’s Equations (edX) EdX
MIT,MITx

Electricity and Magnetism: Maxwell’s Equations (edX)

In this final part of 8.02, we will cover Faraday’s Law, Circuits with Inductors, Maxwell’s equations, and electromagnetic radiation. This introductory Electromagnetism physics course will require the use of calculus. Electricity and Magnetism dominate much of the world around us – from the most fundamental processes in nature to cutting edge electronic devices.

Self Paced
Self-Paced
Circuits and Electronics 3: Applications (edX) EdX
MIT,MITx

Circuits and Electronics 3: Applications (edX)

Learn about cool applications, op-amps and filters in the design of microchips used in smartphones, computers, and the internet. Want to learn how your radio works? Wondering how to implement filters using resistors, inductors, and capacitors? Wondering what are some other applications of RLC and CMOS circuits? This free circuit course, taught by edX CEO and MIT Professor Anant Agarwal and MIT colleagues, is for you.

Self Paced
Self-Paced
Solar Energy 1 (edX) EdX
Delft University of Technology,DelftX

Solar Energy 1 (edX)

Learn about the leading role of solar energy in rural electrification and climate change mitigation. Introduce yourself to the physical principle of the photovoltaic energy conversion of solar cells. In this first course in the program Solar Energy you will be introduced to the technology that converts solar energy into electricity.

Self Paced
Self-Paced
Sustainable Energy: Design a Renewable Future (edX) EdX
Delft University of Technology,DelftX

Sustainable Energy: Design a Renewable Future (edX)

Learn how to make the transition to 100% renewable energy from wind, solar and biomass for electricity, heat and fuels for a sustainable future. A transition to sustainable energy is needed for our climate and welfare. In this engineering course, you will learn how to assess the potential for energy reduction and the potential of renewable energy sources like wind, solar and biomass. You’ll learn how to integrate these sources in an energy system, like an electricity network and take an engineering approach to look for solutions and design a 100% sustainable energy system.

Self Paced
Self-Paced
AP® Physics 1 - Part 4: Exam Prep (edX) EdX
Rice University,RiceX

AP® Physics 1 - Part 4: Exam Prep (edX)

The fourth of four courses in a dynamic, comprehensive series that provides a solid base in introductory physics and helps prepare you for the AP Physics 1 Exam. Free textbook included! In this four-part series, we will explore AP Physics 1 concepts and prepare for the AP Physics 1 Exam in an exciting and entirely new way. Increase your skills – and your readiness – for the AP Exam though quality videos, inquiry labs, Hollywood-style Concept Trailers™, Direct Measurement Videos, AP problem-solving sessions and more!

No sessions available
4 Weeks
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
Solar Energy: Photovoltaic (PV) Energy Conversion (edX) EdX
Delft University of Technology,DelftX

Solar Energy: Photovoltaic (PV) Energy Conversion (edX)

Learn how solar cells generate electricity, and about the semiconductor physics and optics required to design and manufacture solar cells. The key factor in getting more efficient and cheaper solar energy panels is the advance in the development of photovoltaic cells. In this course you will learn how photovoltaic cells convert solar energy into useable electricity. You will also discover how to tackle potential loss mechanisms in solar cells.

Self Paced
5-12 Weeks