By the end of this course, you will be able to explain how data centers power AI‑driven decarbonization across the global economy and why sustainable digital infrastructure is foundational to achieving net‑zero goals. You will learn how AI, enabled by cloud and edge data centers, supports clean energy grids, optimizes buildings and manufacturing operations, and accelerates electrified, efficient transportation systems.
Through five beginner‑friendly modules, the course explores real‑world examples of how predictive analytics, digital twins, automation, and smart energy management reduce emissions while improving resilience, efficiency, and reliability. You will gain a cross‑sector understanding of how AI relies on data centers to manage renewable energy, balance supply and demand, optimize EV charging and mobility, and modernize industrial and building operations, without requiring advanced technical knowledge.
This course is designed for learners who want to understand how AI‑enabled data centers and digital infrastructure support decarbonization across major sectors of the economy. It is most relevant for data center, IT, and digital infrastructure professionals; energy and power‑sector practitioners; and sustainability or technology leaders working at the intersection of AI, electrification, and infrastructure. The course is also valuable for consultants, policy professionals, and students seeking a systems‑level view of how AI operates at scale - inside data centers, at the edge, and across connected industries - to enable real‑world emissions reduction.
Data centers that once operated in the background are well known by almost everyone thanks to
recent Artificial Intelligence hype. There has been a wave of new scrutiny of data center energy
use and carbon emissions. However, forecasts showing future sustainability of the sector and
active participation in carbon footprint reduction from the economy present optimistic perspectives.
Carbon footprint reduction in every sector of the economy requires data centers. Electrification and
digitization enabled by data centers will drive decarbonization, which will improve quality of life and
boost technology development. By relying on renewable power sources, innovative power, and
cooling technologies, data centers will continue to reduce their own emissions while mitigating
major emissions from other sectors and leveraging Artificial Intelligence.
Das ist alles enthalten
10 Videos4 Lektüren4 Aufgaben
Infos zu Modulinhalt anzeigen
10 Videos•Insgesamt 22 Minuten
Welcome•1 Minute
What's in it for me?•1 Minute
Sustainability in Data Centers•1 Minute
Current Trends and Challenges•3 Minuten
Forecast of Data Centers in the Modern Economy•4 Minuten
Impact of AI•3 Minuten
Growth of Renewable Power Sources•3 Minuten
How Data Centers Support Decarbonization of the Economy•2 Minuten
How Artificial Intelligence Supports Sustainability•2 Minuten
Summary•1 Minute
4 Lektüren•Insgesamt 40 Minuten
Welcome to the Course: Setting Expectations for Your Learning Journey!•10 Minuten
What is the Jevons Paradox? •10 Minuten
How Six AI Attributes Change Data Center Design•10 Minuten
Course Resource: Schneider Electric White Paper•10 Minuten
4 Aufgaben•Insgesamt 60 Minuten
Knowledge Check - Foundations of Data Center Sustainability•10 Minuten
Knowledge Check - AI, Efficiency, and the Growing Data Center Economy•10 Minuten
Knowledge Check - AI and Data Centers for Decarbonization•10 Minuten
Graded Assessment•30 Minuten
Decarbonizing the Power Sector: The Critical Role of AI and Data Centers
Modul 2•2 Stunden abzuschließen
Moduldetails
The decarbonization of energy generation and distribution is an important objective because sizable
emissions from this sector are widespread across the entire economy. The power sector requires
electrification with more renewables in the energy mix. Equally important is extensive digitalization that will
help manage transformation. This process will generate large amounts of data, which is impossible without
including data centers in infrastructure. By housing Artificial Intelligence, data centers will allow smart
management of supply and demand to mitigate carbon footprint. Energy generation and distribution are
going to be significantly more resilient and secure thanks to the broader deployment of data centers.
Das ist alles enthalten
12 Videos1 Lektüre5 Aufgaben1 Plug-in
Infos zu Modulinhalt anzeigen
12 Videos•Insgesamt 24 Minuten
Welcome•1 Minute
What's in it for me?•1 Minute
Decarbonizing the Energy Sector Through AI and Digitalization•2 Minuten
Digitalization and the Future of Power Generation and Distribution•3 Minuten
How Data Centers Influence Efficient Power Generation•2 Minuten
How Artificial Intelligence Enables Efficient and Renewable Power Systems•3 Minuten
Green Power Generation Enabled by AI and Data Centers•3 Minuten
Sustainable Energy Storage for Distributed Power Systems•3 Minuten
How Data Centers Support the Decarbonization of Operations in Power Sector•3 Minuten
How AI is Used with Power Distribution•2 Minuten
Urbanization, Decentralization, and AI-Enabled Power Sector Transformation•2 Minuten
Summary•1 Minute
1 Lektüre•Insgesamt 10 Minuten
Course Resource: Schneider Electric White Paper•10 Minuten
5 Aufgaben•Insgesamt 65 Minuten
Knowledge Check - AI and Digitalization in the Energy Sector•10 Minuten
Knowledge Check - AI and Data Centers in Clean Power Generation•10 Minuten
Knowledge Check - AI‑Enabled Energy Storage and Distributed Systems•5 Minuten
Knowledge Check - AI and Data Centers in Power System Transformation•10 Minuten
Graded Assessment•30 Minuten
1 Plug-in•Insgesamt 15 Minuten
Practice Activity: AI for Smart Energy Systems•15 Minuten
Constructing a Greener Future: How Data Centers Power AI-Driven Decarbonization of Building
Modul 3•1 Stunde abzuschließen
Moduldetails
Reducing pollution from commercial and residential buildings is based on electrification and consecutive
digitalization. Both actions show tremendous potential to deliver expected decarbonization through
increased renewables share in energy supply, smart management of HVAC that respects building
occupancy, and control of emerging electrical loads like EV charging stations located in buildings. Predictive
tools driving that transformation are housed in data centers. AI will be used for battling buildings emissions
from operations and mitigating embedded carbon, but large data generated in the process requires IT
infrastructure. Sectorial efficiency gains achieved thanks to smart tools are impossible without data centers
providing computing power and low latency transfers.
Das ist alles enthalten
9 Videos1 Lektüre4 Aufgaben
Infos zu Modulinhalt anzeigen
9 Videos•Insgesamt 15 Minuten
Welcome•1 Minute
What's in it for me ?•1 Minute
Decarbonizing the Buildings Sector Through AI and Data Centers •2 Minuten
Digitalization, Monitoring, and Predictive Analytics for Building Decarbonization•1 Minute
Smart Buildings, Hybrid Work, and AI-Managed Operations•2 Minuten
Enabled Energy Management and Renewable Integration in Buildings•1 Minute
Impact of Artificial Intelligence (AI) on the Buildings Sector•2 Minuten
How AI enables Electrification of the Buildings Sector•3 Minuten
Summary•1 Minute
1 Lektüre•Insgesamt 10 Minuten
Course Resource: Schneider Electric White Paper•10 Minuten
4 Aufgaben•Insgesamt 60 Minuten
Knowledge Check - AI and Data Centers in Building Decarbonization•10 Minuten
Knowledge Check - AI‑Managed Smart Buildings and Energy Systems•10 Minuten
Knowledge Check - AI and Electrification in the Buildings Sector•10 Minuten
Graded Assessment•30 Minuten
Decarbonizing Manufacturing and Production: The Impact of AI on Data Center Efficiency
Modul 4•2 Stunden abzuschließen
Moduldetails
Substantial contributions to global emissions coming from manufacturing are likely to decrease thanks to
improvements in operational efficiency. Digitalization of the production sector will lead a transformation
towards optimized processes and have the potential to change the existing paradigm driving IT/OT
convergence. In the foreseeable future, Artificial Intelligence that relies on undisturbed access to data
centers will drive decarbonization of manufacturing. Smart algorithms employed in automation and
predictive tools will decrease asset down time and generate vast amounts of data, which need to be
securely transferred, processed, and stored. Data centers are an inevitable element in reducing carbon
footprint in manufacturing.
Das ist alles enthalten
12 Videos2 Lektüren4 Aufgaben1 Plug-in
Infos zu Modulinhalt anzeigen
12 Videos•Insgesamt 24 Minuten
Welcome•1 Minute
What's in it for me?•2 Minuten
Digitalization and Industry 4.0 for Manufacturing Decarbonization•2 Minuten
AI, Data Centers, and the Future of Sustainable Manufacturing•3 Minuten
Data Centers in Industrial Operations•3 Minuten
AI-Driven Energy Management and Decarbonization in Manufacturing•1 Minute
AI-Driven Waste Reduction and Real-Time Production Optimization•1 Minute
AI-Improved Product and Process Design Using Digital Twins•1 Minute
Automation and Human-Machine Interaction in Smart Manufacturing•3 Minuten
How AI is Driving the Change in the Manufacturing Industry•2 Minuten
AI-Driven Manufacturing Intelligence, Automation, and Cybersecurity•3 Minuten
Summary •2 Minuten
2 Lektüren•Insgesamt 20 Minuten
Industry 4.0 Enabled by Data Centers•10 Minuten
Course Resource: Schneider Electric White Paper•10 Minuten
4 Aufgaben•Insgesamt 60 Minuten
Knowledge Check - AI, Digitalization, and Manufacturing Decarbonization•10 Minuten
Knowledge Check - AI and Data Centers in Smart Manufacturing•10 Minuten
Knowledge Check - AI, Industry 4.0, and Intelligent Manufacturing•10 Minuten
Graded Assessment•30 Minuten
1 Plug-in•Insgesamt 15 Minuten
Practice Activity - AI‑Powered Product Design •15 Minuten
Harnessing Data Centers: Driving Decarbonization in Transportation through AI and Electrification
Modul 5•2 Stunden abzuschließen
Moduldetails
The global carbon footprint is largely made of emissions from transportation. Electrification and digitalization
of the sector will strongly reduce pollution and increase sustainability, thanks to green fuel and optimization
of operations. However, smart management of EV charging stations or automated supervision of fleets with
predictive algorithms driving decarbonization will generate large amounts of data. Data centers are an
essential element of the transport evolution, enabling AI algorithms participation in sectorial transformation.
Smart tools substantially increase data traffic and require low latency, secure networks, and fully accessible
platforms to operate. Optimization and a large part of decarbonization in the transportation sector are
impossible without the broader deployment of data centers.
Das ist alles enthalten
13 Videos1 Lektüre5 Aufgaben
Infos zu Modulinhalt anzeigen
13 Videos•Insgesamt 22 Minuten
Welcome•1 Minute
What's in it for me?•1 Minute
Transportation Emissions and the Need for Decarbonization•1 Minute
Electrification, Digitalization, and AI-Enabled Transport Systems•3 Minuten
AI-Enabled Transport Operations and Smart Mobility•2 Minuten
Policy, Behavioral Change, and Digitalization in Transport Decarbonization•2 Minuten
AI-Driven Transport Trends Across Modes and Logistics•4 Minuten
AI-Driven Autonomous Road Transport and Logistics•2 Minuten
Autonomous Maritime and Aviation Transport Enabled by AI•2 Minuten
Smart Cities and AI-Enabled Green Transport Systems•1 Minute
AI-Driven Fuel Innovation and Supply Chain Decarbonization•1 Minute
AI-Enabled Vehicle Technology and Freight Decarbonization•2 Minuten
Summary•1 Minute
1 Lektüre•Insgesamt 10 Minuten
Course Resource: Schneider Electric White Paper•10 Minuten
5 Aufgaben•Insgesamt 70 Minuten
Knowledge Check - Decarbonizing Transportation with AI and Electrification•10 Minuten
Knowledge Check - AI‑Enabled Smart Mobility and Transport Transformation•10 Minuten
Schneider Electric is a global energy technology leader, driving efficiency and sustainability by electrifying, automating, and digitalizing industries, businesses, and homes. Its technologies enable buildings, data centers, factories, infrastructure, and grids to operate as open, interconnected ecosystems, enhancing performance, resilience, and sustainability. The portfolio includes intelligent devices, software-defined architectures, AI-powered systems, digital services, and expert advisory.
With 160,000 employees and one million partners in over 100 countries, Schneider Electric is consistently ranked among the world’s most sustainable companies.
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