EdX

Business Implications of Intelligent and Integrated Energy Systems (edX)

Business Implications of Intelligent and Integrated Energy Systems (edX)

Learn how digital technologies help with the energy transition and then how to use this to develop future potential business models in various energy and energy-dependent sectors. This course focuses on the emerging digitalization-based business models in the energy systems field. You will study how digital technologies can aid practitioners and business leaders to reach more sustainable systems and operations and create modern and more sustainable business frameworks.

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

First, you will investigate the energy supply side, namely, the providers of electricity and their markets. You will learn about the different markets and new approaches in energy trading.
You will focus on coupling within energy sectors, specifically electricity, heat, and gas. Second, you will investigate the demand side and the perspective of the sectors whose operations rely mainly on energy (including the electric mobility sector and the challenges it faces). You will conclude the course by discussing the wider framework in which these sectors work and interact together, which is represented in the paradigm of smart cities.
This course is part of the Intelligent and Integrated Energy Systems Professional Certificate.

What you'll learn

  • Interpret the reasons behind the evolution of new business models in the energy landscape as well as smart cities.
  • Develop an understanding of the promising technologies and trends in the energy sector.
  • Understand recent innovations in energy trading, such as tokenization, peer-to-peer markets and renewables hedging.
  • Identify the most effective policies to move towards a competitive, sustainable, efficient and competitive deregulated market.
  • Evaluate the impact of different investment and operational scenarios and choose the best option for your organization.
  • Identify promising trends and investments in energy landscapes and smart cities to develop suitable business strategies.

Syllabus

Module 1:
We review the evolution of electricity trading; past, present, future. We talk about the reasons behind market deregulation both at the wholesale and retail levels. We compare different markets and explain the choice of each market structure. We also look at some new approaches in energy trading. Finally, we bring some insights on how markets will continue to evolve in future.
• Introduction
• Energy market deregulation
• Retail energy market deregulation: tariff design and integrating renewables
• Future of electricity markets

Module 2:
We discuss the newest innovations in energy trading. We take a look at renewable energy trading and discuss risk management in this context. We discover the exciting use of tokenization to facilitate energy trading. We present the intricacies of peer-to-peer trading, a new eBay-like means of trading energy. We also review other innovations, such as flexibility trading and energy communities.
• Renewable energy trading and risk management
• Energy tokenization
• Peer-to-peer electricity trading
• Other innovations

Module 3:
We introduce the concept of sector coupling specifically in the electricity, heat and gas sectors. We discuss the reasons behind such developments and how energy transition can benefit. We focus on some of the most important and promising ideas and implementations across these sectors. Finally, we bring some insights on how sector coupling might evolve in future.
• Energy system integration
• Design of intelligent buildings
• Introduction to thermal comfort
• Smart HVAC
• Heat market design

Module 4:
We focus on the electric mobility sector, which is one of the most energy-dependent sectors. We study how to facilitate and successfully make sustainable systems for the transition from conventional fossil fuel to electric vehicles. We investigate the problem from the passengers’, manufacturers’ and electricity grid perspectives. Additionally, we present the problem in the public transport context and examine how operators can electrify their transit bus networks.
• Factors and policies affecting adoption of electric vehicles
• Business models for electric vehicles charging
• Solar electric vehicles
• Electric transit bus networks

Module 5:
We focus on more energy dependent sectors and their linkage to urban data platforms in the context of smart cities and digitalization. We first provide an overview of smart cities and the various domains within them. Afterwards, we elaborate on urban data platforms and how they can be used to innovate new business models given some examples such as digital twinning. Finally, we provide a case study from seaport operations showing how digital technologies and automation can help in realizing more sustainable operations.
• Smart cities and digitalization
• Digital twinning
• Energy management in data centers
• Smart port operations

Final Assignment:
Business model canvas.
“ Innovations for a Sustainable Business Model Canvas ”

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

Related Courses

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
Cities and the Challenge of Sustainable Development (edX) EdX
SDGAcademyX,SDG Academy

Cities and the Challenge of Sustainable Development (edX)

What is a sustainable city? Learn the basics here. According to the United Nations, urbanization and population growth could result in an increase of 2.5 billion people into urban populations by 2050, with associated impacts ranging from increased transportation needs to more building. How do we make cities sustainable to support this growth?

Self Paced
Self-Paced
The Resilient and Renewable Grid: How Microgrids are Revolutionizing Energy Systems (edX) EdX
University of Alaska Fairbanks,AlaskaX

The Resilient and Renewable Grid: How Microgrids are Revolutionizing Energy Systems (edX)

A foundational course on microgrid systems design with an emphasis on community-based projects and non-grid connected remote systems. The electric grid of the future will need to be more resilient, decentralized, and capable of integrating more distributed energy resources including on-site renewable energy technologies, energy storage and even electric vehicle (EV) charging. Microgrids are an important building block in designing this sustainable grid architecture of the future. This course covers fundamental concepts of microgrid design from a community-centric perspective and emphasizes a holistic approach to energy systems management.

Self Paced
Self-Paced
La Reforma Energética de México y sus oportunidades (edX) EdX
Tecnológico de Monterrey,TecdeMonterreyX

La Reforma Energética de México y sus oportunidades (edX)

Explica los principales cambios y las oportunidades de nuevos negocios que facilita la reforma energética de México. ¿Sabías que la reforma energética en México es uno de los cambios más importantes que ha ocurrido en el país en los últimos 70 años? ¿Sabes cuál es el alcance de la reforma en la economía mexicana y cómo te impacta?

Self Paced
Self-Paced
Energía eléctrica: conceptos y principios básicos (edX) EdX
Tecnológico de Monterrey,TecdeMonterreyX

Energía eléctrica: conceptos y principios básicos (edX)

Aprende los conceptos básicos de la electricidad, para comprenderla, saber medirla y utilizarla de manera eficiente. Actualmente el uso de la electricidad es algo cotidiano, sin embargo, muy pocas personas conocen los conceptos y principios básicos que permiten comprender como funciona, cuáles son sus parámetros básicos, cómo se miden o cómo hacer un mejor uso de la energía. Este curso de electricidad presenta conceptos básicos como voltaje, corriente y resistencia que te permitirán comprender cómo se mide la potencia y el consumo de energía.En este curso entenderás que es la energía eléctrica y su importancia.

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
Designing Climate-Neutral Industry and Electricity Generation (edX) EdX
Delft University of Technology,DelftX

Designing Climate-Neutral Industry and Electricity Generation (edX)

Learn about types and sources of industrial emissions and tools to mitigate them. Learn what the options are for climate-neutral electricity and review the strategies for dealing with the variability of renewable energy. This course is designed for the next generation of policy-makers, sustainability consultants or professionals and students from various fields who want an overview of climate change mitigation strategies in industry and electricity generation and apply them to their own projects.

Self Paced
Self-Paced