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GIS and Remote Sensing for Monitoring and Evaluation (M&E) Training Course

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Training Locations Kenya (Nairobi, Mombasa, Malindi, Kisumu, Nakuru, Nanyuki) · Tanzania (Dodoma, Zanzibar, Dar es Salaam) · Dubai UAE · South Africa (Pretoria, Cape Town) · Istanbul · Accra · Banjul more ▾
Groups & Payment Groups of 5+ receive one complimentary place — see group rates. Payment due at least 1 month before (Europe & Asia) or 2 weeks before (Africa programs).
Virtual / Online
Live, instructor-led — join from anywhere
544 dates
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Aug 17, 2026 Aug 28, 2026 10 days Virtual Onsite
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Classroom / In-Person
Same course & certificate — face-to-face
14 locations
Nairobi, Kenya Aug 17, 2026 (99)
Kigali, Rwanda Aug 17, 2026 (49)
Kampala, Uganda Aug 17, 2026 (30)
Dubai, UAE Aug 17, 2026 (51)
Mombasa, Kenya Aug 24, 2026 (50)
Pretoria, South Africa Aug 24, 2026 (48)
Kuala Lumpur, Malaysia Aug 24, 2026 (27)

Format: Live instructor-led online training via Zoom / Microsoft Teams

GIS and Remote Sensing for Monitoring and Evaluation (M&E) Training Course

Course Introduction

Geographic Information Systems (GIS) and Remote Sensing technologies have become essential tools for modern Monitoring and Evaluation (M&E) systems by enabling organizations to collect, analyze, visualize, and manage spatial and temporal data for evidence-based decision-making. Governments, development agencies, humanitarian organizations, environmental institutions, agricultural programs, infrastructure projects, and private sector organizations increasingly rely on GIS and Remote Sensing technologies to monitor project implementation, assess impacts, identify geographic trends, and improve accountability and transparency. Advances in satellite imagery, geospatial analytics, drone technology, spatial databases, and cloud-based mapping platforms have transformed monitoring and evaluation practices by providing real-time and location-specific insights.

This GIS and Remote Sensing for Monitoring and Evaluation Training Course equips participants with practical knowledge and technical competencies required to apply geospatial technologies in project monitoring, performance assessment, and development planning. The course covers GIS principles, spatial data management, satellite image processing, geospatial analysis, mapping techniques, Global Positioning System (GPS) technologies, drone applications, and remote sensing methodologies. Participants will learn how to integrate geospatial information into monitoring frameworks to enhance project tracking, resource allocation, and evidence generation.

The training emphasizes practical applications of GIS and Remote Sensing in environmental monitoring, disaster risk management, agricultural development, public health surveillance, infrastructure management, humanitarian response, and sustainable development initiatives. Participants will gain hands-on experience in collecting spatial data, developing digital maps, performing geospatial analyses, and creating interactive dashboards that support real-time monitoring and strategic decision-making. The course also addresses data quality management, geospatial information governance, and integration of GIS technologies with monitoring and evaluation systems.

Through practical exercises, web-based tutorials, collaborative group work, and real-world case studies, participants will develop competencies required to design and implement GIS and Remote Sensing solutions for monitoring and evaluation systems. Upon successful completion of the course, participants will be able to leverage geospatial technologies to improve organizational performance, strengthen accountability mechanisms, enhance data-driven decision-making, and support sustainable development and evidence-based program management.

Course Objectives

Upon completion of this course, participants will be able to:

1.     Understand the principles and concepts of GIS and Remote Sensing in monitoring and evaluation.

2.     Collect, manage, and analyze spatial data for monitoring and evaluation systems.

3.     Utilize satellite imagery and remote sensing technologies for project monitoring.

4.     Develop digital maps and geospatial databases for evidence-based decision-making.

5.     Apply geospatial analysis techniques to monitor development interventions and project performance.

6.     Integrate GPS, drone technologies, and GIS platforms into monitoring systems.

7.     Design real-time monitoring dashboards and spatial reporting systems.

8.     Conduct environmental and socio-economic assessments using geospatial technologies.

9.     Strengthen data quality, governance, and information management practices in geospatial systems.

10.  Develop GIS and Remote Sensing strategies that support digital transformation and sustainable development initiatives.

Organizational Benefits

1.     Improved project monitoring and performance tracking capabilities.

2.     Enhanced evidence-based planning and decision-making processes.

3.     Increased efficiency in data collection and information management.

4.     Improved visualization and communication of project outcomes.

5.     Enhanced resource allocation and operational planning.

6.     Strengthened environmental and infrastructure monitoring systems.

7.     Improved accountability, transparency, and reporting mechanisms.

8.     Enhanced disaster preparedness and risk management capabilities.

9.     Increased organizational innovation and digital transformation readiness.

10.  Improved organizational performance through real-time geospatial intelligence.

Target Participants

This course is designed for Monitoring and Evaluation Officers, Project Managers, Program Managers, GIS Specialists, Remote Sensing Analysts, Data Analysts, Information Management Specialists, Environmental Officers, Agricultural Officers, Infrastructure Managers, Disaster Risk Management Professionals, Public Health Officers, Government Officials, NGO Professionals, Humanitarian Program Managers, Researchers, Development Practitioners, Consultants, Urban Planners, and professionals responsible for monitoring systems, geospatial information management, and evidence-based planning.

Course Outline

Module 1: Introduction to GIS and Remote Sensing for Monitoring and Evaluation

1.     Fundamentals and concepts of GIS and Remote Sensing

2.     Principles of geospatial technologies and spatial thinking

3.     Applications of GIS and Remote Sensing in monitoring and evaluation

4.     Components of geospatial information systems

5.     Benefits and challenges of geospatial technologies

6.     Case Study: Applying GIS and Remote Sensing technologies in development project monitoring

Module 2: Spatial Data Collection and Management

1.     Types and sources of spatial data

2.     Spatial data models and structures

3.     GPS technologies and field data collection techniques

4.     Spatial database design and management

5.     Data quality assurance and metadata management

6.     Case Study: Developing geospatial databases for monitoring and evaluation systems

Module 3: Geographic Information Systems and Mapping Techniques

1.     Fundamentals of digital mapping and cartography

2.     Coordinate systems and map projections

3.     Map creation and visualization techniques

4.     Thematic mapping and interactive dashboards

5.     Geospatial data integration and interoperability

6.     Case Study: Creating digital maps for project performance monitoring

Module 4: Introduction to Remote Sensing Technologies

1.     Fundamentals and principles of remote sensing

2.     Electromagnetic spectrum and image acquisition processes

3.     Types of satellite and aerial imagery

4.     Image resolution and interpretation techniques

5.     Remote sensing applications in monitoring and evaluation

6.     Case Study: Utilizing satellite imagery for environmental monitoring initiatives

Module 5: Satellite Image Processing and Analysis

1.     Satellite image preprocessing techniques

2.     Image enhancement and classification methods

3.     Change detection and time series analysis

4.     Land use and land cover mapping

5.     Integration of imagery with GIS systems

6.     Case Study: Monitoring land use changes using satellite image analysis

Module 6: Geospatial Analysis for Monitoring and Evaluation

1.     Spatial analysis concepts and methodologies

2.     Overlay analysis and proximity analysis techniques

3.     Buffering and network analysis methods

4.     Spatial statistics and hotspot analysis

5.     Multi-criteria decision analysis techniques

6.     Case Study: Applying geospatial analysis to monitor development interventions

Module 7: GIS and Remote Sensing for Environmental Monitoring

1.     Environmental monitoring concepts and frameworks

2.     Monitoring natural resources and ecosystems

3.     Climate change and environmental impact assessments

4.     Watershed and biodiversity monitoring techniques

5.     Environmental risk assessment methodologies

6.     Case Study: GIS applications in climate and environmental monitoring programs

Module 8: GIS and Remote Sensing for Agricultural Monitoring

1.     Precision agriculture and geospatial technologies

2.     Crop monitoring and yield estimation techniques

3.     Soil mapping and land suitability assessments

4.     Agricultural resource management systems

5.     Food security monitoring and early warning systems

6.     Case Study: Remote sensing applications in agricultural productivity monitoring

Module 9: GIS Applications in Infrastructure and Urban Development

1.     Infrastructure mapping and asset management

2.     Transportation and utility network analysis

3.     Urban growth and land use planning techniques

4.     Spatial monitoring of development projects

5.     Smart city applications and geospatial intelligence

6.     Case Study: GIS applications in infrastructure project monitoring and planning

Module 10: GIS and Remote Sensing for Disaster Risk Management

1.     Disaster risk assessment and vulnerability mapping

2.     Hazard identification and spatial modeling techniques

3.     Early warning systems and emergency response planning

4.     Monitoring disaster impacts using geospatial technologies

5.     Recovery and resilience planning methodologies

6.     Case Study: Applying GIS for disaster preparedness and response systems

Module 11: Integrating GIS and Remote Sensing with Monitoring and Evaluation Systems

1.     Geospatial integration within M&E frameworks

2.     Developing geospatial indicators and performance metrics

3.     Designing spatial monitoring dashboards and reporting systems

4.     Data sharing and interoperability mechanisms

5.     Organizational strategies for geospatial information management

6.     Case Study: Building integrated GIS-enabled monitoring and evaluation systems

Module 12: Emerging Technologies and Future Trends in Geospatial Monitoring

1.     Drone technologies and unmanned aerial systems applications

2.     Cloud-based GIS and web mapping platforms

3.     Artificial intelligence and machine learning in geospatial analytics

4.     Internet of Things integration with GIS technologies

5.     Future trends in geospatial monitoring and digital transformation

6.     Case Study: Developing future-ready geospatial monitoring and evaluation solutions

General Information

1.     Customized Training: All our courses can be tailored to meet the specific needs of participants.

2.     Language Proficiency: Participants should have a good command of the English language.

3.     Comprehensive Learning: Our training includes well-structured presentations, practical exercises, web-based tutorials, and collaborative group work. Our facilitators are seasoned experts with over a decade of experience.

4.     Certification: Upon successful completion of training, participants will receive a certificate from Foscore Development Center (FDC-K).

5.     Training Locations: Training sessions are conducted at Foscore Development Center (FDC-K) centers. We also offer options for in-house and online training, customized to the client's schedule.

6.     Flexible Duration: Course durations are adaptable, and content can be adjusted to fit the required number of days.

7.     Onsite Training Inclusions: The course fee for onsite training covers facilitation, training materials, two coffee breaks, a buffet lunch, and a Certificate of Successful Completion. Participants are responsible for their travel expenses, airport transfers, visa applications, dinners, health/accident insurance, and personal expenses.

8.     Additional Services: Accommodation, pickup services, freight booking, and visa processing arrangements are available upon request at discounted rates.

9.     Equipment: Tablets and laptops can be provided to participants at an additional cost.

10.  Post-Training Support: We offer one year of free consultation and coaching after the course.

11.  Group Discounts: Register as a group of more than two and enjoy a discount ranging from 10% to 50%.

12.  Payment Terms: Payment should be made before the commencement of the training or as mutually agreed upon, to the Foscore Development Center account. This ensures better preparation for your training.

13.  Contact Us: For any inquiries, please reach out to us at training@fdc-k.org or call us at +254712260031.

14.  Website: Visit our website at www.fdc-k.org for more information.

 

 

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