GIS & Remote Sensing in Agriculture, Food Security and Climate Change Training Course

GIS & Remote Sensing in Agriculture, Food Security and Climate Change Training Course

This training course will equip participants with the necessary skills and knowledge on how to report, analyze, and disseminate data for all health programs.

Intermediate | 10 days | Face to Face / Online / Elearning | Certificate
01

Course Overview

Course Summary
Course Title GIS & Remote Sensing in Agriculture, Food Security and Climate Change Training Course
Organization Tech For Development (T4D)
Venue Tech For Development (T4D) Training Center along Tala Road, Runda, Nairobi
Duration 10 days
Target Industries
Target Job Roles
Course Fees (Face-to-Face) USD 2,200/KES 150,000 (Exclusive of VAT)
Course Fees (Virtual)
Training Modes Virtual and face-to-face training
Payment Payment should be made to the Tech For Development (T4D) bank account on or before the start of the course
Accreditation Tech For Development Certificate of Course Completion

Course Overview:

This course offered at T4D provides a comprehensive introduction and practical experience in applying GIS (Geographic Information Systems) and Remote Sensing technologies to address issues related to agriculture, food security, and climate change. Participants will learn to use satellite data, spatial analysis, and geospatial tools to support sustainable land use, monitor environmental change, assess crop health, and plan climate-resilient agricultural interventions. The course emphasizes real-world applications through hands-on exercises and case studies from different regions.

Course Duration:

10 Days 

Target Audience:

  • Agricultural officers and extension workers

  • Food security program managers

  • Climate change analysts and environmental consultants

  • GIS professionals working in rural development

  • NGO and government staff working on agriculture and sustainability

  • Researchers and students in agriculture, climate science, or GIS

Personal Impact:

  • Develop technical expertise in applying GIS and Remote Sensing to agricultural and climate data

  • Gain practical experience in mapping crop patterns, soil health, and climate impacts

  • Improve capacity to support sustainable farming and food systems

  • Enhance career prospects in agriculture, climate resilience, and environmental planning

  • Learn to analyze satellite data for informed decision-making in rural development

Organizational Impact:

  • Build internal GIS capacity for agriculture and environmental monitoring

  • Improve planning and resource allocation for food security initiatives

  • Enhance climate change adaptation strategies through spatial data analysis

  • Enable data-driven project design and impact evaluation

  • Support cross-sectoral collaboration with visual, spatial data insights

Course Objectives:

By the end of the course, participants will be able to:

  • Understand the principles of GIS and Remote Sensing and their relevance to agriculture and climate change

  • Collect, process, and interpret spatial and satellite data

  • Use geospatial tools to assess crop performance and land suitability

  • Analyze and visualize climate and environmental risks

  • Apply spatial analysis to monitor food security indicators

  • Develop map-based reports and dashboards for decision support

  • Apply case-based learning to real-life agricultural and climate scenarios

02

Course Modules

Course Outline:

Module 1: Introduction to GIS, Remote Sensing, and Their Applications in Agriculture

  • Basic GIS and RS concepts

  • Overview of spatial data types and sources

  • Applications of geospatial technologies in agriculture and climate monitoring
    Case Study: Mapping agricultural zones and land use classification in a developing country

Module 2: Satellite Data Sources and Image Acquisition

  • Overview of satellite platforms (Sentinel, Landsat, MODIS)

  • Accessing open satellite imagery (Copernicus, USGS Earth Explorer)

  • Understanding spatial, spectral, and temporal resolution
    Project: Downloading and selecting appropriate imagery for crop monitoring in a semi-arid area

Module 3: Image Preprocessing and Enhancement

  • Radiometric and atmospheric correction

  • Image mosaicking and clipping

  • Enhancement techniques for better interpretation
    Case Study: Preparing imagery for NDVI analysis in a drought-prone region

Module 4: Vegetation Indices and Crop Monitoring

  • NDVI, EVI, SAVI, and other indices

  • Time-series analysis of vegetation health

  • Detecting crop stress and anomalies
    Project: Mapping crop vigor using NDVI across growing seasons

Module 5: Land Use and Land Cover (LULC) Classification

  • Supervised and unsupervised classification methods

  • Accuracy assessment and confusion matrix

  • LULC change detection techniques
    Case Study: Monitoring agricultural expansion and forest loss over 10 years

Module 6: Soil and Water Resource Mapping

  • Mapping soil types and moisture using RS data

  • Identifying water bodies and irrigation potential

  • Integration of field data with spatial datasets
    Project: Delineating potential irrigation zones using DEM and RS imagery

Module 7: Climate Change Analysis Using GIS & Remote Sensing

  • Mapping temperature and rainfall trends

  • Climate anomaly and variability visualization

  • Use of climate models and downscaled data
    Case Study: Assessing the impact of changing rainfall patterns on crop yield

Module 8: Food Security and Agricultural Risk Mapping

  • Identifying food-insecure areas using spatial indicators

  • Risk mapping for drought, pests, and market access

  • Linking remote sensing with household and survey data
    Project: Developing a spatial risk map for early warning systems

Module 9: GIS-Based Decision Support Tools and Dashboards

  • Creating interactive maps and dashboards

  • Using ArcGIS Online, QGIS Web, and other platforms

  • Data storytelling and stakeholder communication
    Case Study: Building a food security monitoring dashboard for a humanitarian agency

Module 10: Capstone Project and Presentation

  • Group or individual final projects based on real datasets

  • Integration of remote sensing, GIS, and climate data

  • Presentation of findings and recommendations
    Capstone Project: Develop a complete GIS solution for monitoring climate impacts on agricultural production in a specific region

03

Course Administration

Methodology

Instructor-led sessions use a blended learning approach combining presentations, guided practical exercises, web-based tutorials, and group work, delivered by seasoned industry experts. All facilitation and course materials are in English, so participants should be reasonably proficient in the language.

Accreditation

Upon successful completion of this training, participants will be issued a Tech For Development Certificate of Course Completion certified by the National Industrial Training Authority (NITA).

Training Venue

The training will be held at the Tech For Development Training Centre. The course fee covers the course tuition, training materials, two break refreshments, and lunch. All participants will additionally cater to their travel expenses, visa application, insurance, and other personal expenses.

Accommodation & Airport Transfer

Arranged upon request.For reservations contact the Training Officer:
Email: [email protected]
Phone: (+254) 790 824 179

Tailor-Made

This training can also be customized to suit the needs of your institution upon request. You can have it delivered in our T4D Training Centre or at a convenient location.

Payment

Payment should be transferred to the T4D account through a bank on or before the start of the course. Send proof of payment to [email protected].

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