Master's Degree in Continuing Education in Smart City Management
PRESENTATION
Objectives
• Lead the integration of information and communication technologies into urban planning, optimizing the management of infrastructure and services. • Design innovative strategies for the development of smart urban environments, taking into account their social, economic, and environmental impacts. • Manage complex urban projects, from conception to implementation, coordinating specialized multidisciplinary teams. • Evaluate the potential of geospatial data and big data analytics to optimize decision-making in urban contexts. • Integrate principles of sustainability, resilience, and inclusion into the design and operation of advanced urban ecosystems. • Base strategic decisions on data analysis to improve the efficiency and livability of cities. • Implement advanced technological solutions to address challenges in mobility, energy, and construction in urban settings.
Methodology
At Educa PHAROS, we use a highly practical methodology focused on the direct application of knowledge in the student’s professional environment, combining theoretical content with real-world cases, digital tools, and support from a team of specialized instructors.
Program
- Introduction to Sustainability
- The 2030 Agenda and the SDGs
- Challenges for the City of the Future
- Prosperous and Sustainable Cities
- Success Factors for Sustainable and Smart Cities
- Urban Design
- Digitalization of Cities
- Urban Energy Transition
- Urban Mobility
- Circular Cities
- Urban Resilience
- Climate Change Mitigation and Adaptation
- Nature-based solutions
- Healthy Cities
- Peri-urban areas
- Social Challenges
- Ensuring Social Cohesion
- Integrated Urban Governance
- Institutional Leadership
- Networking and Partnerships
- Introduction to the QGIS Project, Desktop, and Layers Panel
- Navigation Tools, Attributes, and Selection
- Geographic Data Formats
- Layer Properties (Source and Symbology)
- Layer Properties (labels, fields, metadata, and actions)
- Alphanumeric data and tables
- Tools Related to Tables. Joining and Linking Tables
- Introduction, Map Creation, and Properties
- Add items
- Tools and Map Export
- Editing, Configuration, and Editing Procedures
- Editing Tools
- Add or modify objects
- Creating New Layers and Modifying Tables
- Basic Geoprocessing
- Coordinate Systems
- Coordinate System Transformation
- Manage and Install Add-ons
- Most Commonly Used Add-ons
- Other Useful Resources
- Project Vision
- Value-Based Prioritization of Requirements
- “People” Technique”
- Estimation with Minimal Information
- Backlog Creation: User Stories
- Applicability to Smart Cities Projects and Roadmap
- Project Maps for Smart Cities
- Using the Project Map
- Change Management
- Timeline, Cost, and People
- Work Management Tool: Kanban Design
- Management Areas According to the Agile Approach
- Executing Iterations
- Monitoring of the Implementation
- Metrics and Continuous Improvement
- Information Displays
- Speed, timebox, and process adjustment
- A management approach focused on digital transformation
- Data as a Cornerstone of Agile Digital Transformation
- Proposed Work Method
- Smart Cities and Spatial Data
- Population and Demographic Indicators
- Socioeconomic Indicators
- Housing, Land, and Public Facilities Indicators
- Best Practices for Urban Projects
- Spatial Data Infrastructures
- IDE, land registries, and geoportals
- Third-party data sources
- Sources of cartographic data
- Thematic Maps for Urban Projects
- Advanced Thematic Maps
- Not just maps, but also charts
- Interactive visualization tools
- Satellite images
- Fieldwork and Collection of Original Data
- Sources of information on trends
- Digital Twins and GIS and BIM Integration
- Social Media and Mobile Networks
- Big Data and Small Data, Sensors, and the Internet of Things (IoT)
- Artificial Intelligence (AI) in the Geospatial Field
- Energy and Energy Consumption
- Introduction to the Energy System and Energy Sustainability
- ReMODULes and Technology
- Impacts of the Energy Transition
- Energy Efficiency
- Smart Buildings (I)
- Smart Buildings (II) and Electric Vehicles
- Implications of Energy Efficiency Project Management (I)
- Implications of Energy Efficiency Project Management (II)
- Support and necessary information for managing it, best practices, and keys to success
- Electrical Power Supply System
- Smart Grids, New Generation and Distribution Systems (I)
- Smart Grids, New Generation and Distribution Systems (II)
- Telecommunications in Smart Grids (I)
- Telecommunications in Smart Grids (II)
- Data in the Smart Grid (I)
- Data in the Smart Grid (II)
- The Role of Project Management in Smart Grids (I)
- The Role of Project Management in Smart Grids (II)
- Regulations, Funding, and Success Stories in Smart Grid Projects
- Polluting emissions and the impact of the transportation sector
- Key Environmental Regulations
- Analysis and Benefits of Life Cycles. Green NCAP Initiatives
- Challenges and Educational Opportunities Presented by New Technological Developments
- Alternative Fuels
- From the Digital City to Smart Cities
- Smart Cities
- The Power of Data in Transportation Planning
- Smart Traffic and Public Transportation Management
- Other smart technologies
- MaaS and the New Mobility
- Objectives, Advantages, Disadvantages, and Challenges of MaaS
- MaaS in the Urban Mobility Planning Process
- MaaS System Governance
- Real-World Examples of MaaS Systems
- Advanced Data Analytics
- Civic Technologies
- Shared Mobility
- Autonomous vehicle
- The City of the Future
- The Anthropocene and Global Change
- The Great Acceleration
- Land-use changes and biodiversity loss
- A Hyperconnected Planet
- Climate Change and Cities in the Anthropocene
- The City as an Ecosystem
- Green Spaces and Urban Green Infrastructure
- The City in the Territory
- Protected Natural Areas in Urban Settings
- Ecological and Socio-Ecological Connectivity
- Ecosystem Services for Decision-Making
- Fundamental concepts in ecology related to ecosystem services
- Methodologies for Assessing Ecosystem Services (I)
- Methodologies for Assessing Ecosystem Services (II)
- Quantifying the Demand for Ecosystem Services
- Fundamental Concepts in Nature-Based Solutions
- Ecological Restoration and Renaturalization Strategies
- Nature in Cities
- Multifunctional Strategies for Adapting to Climate Change
- The Circular Economy in Cities
- Basics of Demography
- Basics of Sociology
- The Transformation of the Urban Environment and Its New Functional Scale
- Urban Complexity and Administrative Cooperation
- Participatory Culture in the Smart City
- The Urban Public Policy Cycle
- Legal Certainty and Process Simplification in the Smart City
- Transparency Portals
- Urban Observatories
- Universal Accessibility to Smart City Government
- Methodology and Design of Participatory Processes
- Types of Participation Processes
- Public Awareness Campaigns
- Participatory forums with focus groups
- Open Workshops and Community-Based Intervention
- Participatory Budgeting in the Smart City
- Citizen Participation in Urban Planning
- Perspectives on Diversity in Civic Participation
- Multilevel Sectoral Governance
- Participatory Co-Governance
- Cities and Spatial Data (I)
- Cities and Spatial Data (II)
- Urban Projects Using Spatial Data and ICT
- Large-Scale Smart City Initiatives: Smart Regions and Tourist Destinations
- Smart City Initiatives at the Local Level: Urban Renewal and the 15-Minute City
- Data from the Construction Industry Applied to Smart Cities
- Circular Buildings: Materials and Sustainability
- Energy Efficiency
- Renewable Energy
- Energetic Learning Communities
- Urban Green Infrastructure
- Urban Pollution Control
- Heat Island Effect
- Calculating the Carbon Footprint
- Detecting Asbestos in Roofs Using Artificial Intelligence
- Sustainable Mobility for the Future
- Efficient Mobility (I)
- Efficient Mobility (II)
- Pedestrians at the Heart of Mobility
- Safe Cities
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