Microcredential

Conservation Technology Innovations: AI, Drones, and GIS

Discover how cutting-edge tools like AI, drones, and GIS are reshaping the future of conservation. In just eight weeks, you’ll gain hands-on experience turning complex ecological data into powerful strategies that drive real impact in biodiversity protection and restoration.

$399

Total: Course cost

15 Hours to complete

Duration

Online - self-paced
Earn a credential

Overview

Note: Enrollment is open now, but course access does not begin until August 17.

Conservation Technology Innovations: AI, Drones, and GIS is a 15-hour learning experience for mid-career professionals who want a practical introduction to GIS, remote sensing, drone-based monitoring, and AI for effective conservation work. You'll learn how to interpret spatial and satellite data, choose the right tools for monitoring and modeling, and turn data into actionable information for decision-makers. We'll cover the ethics of data collection, use, and publication, including data sovereignty and governance structures. 

Throughout this course, you can expect to:

  • Assess priority zones and model ecological scenarios using GIS, satellite data, and remote sensing indices.
  • Guide investment in restoration projects by mapping ecological health and degraded cover with Google Earth Engine and QGIS.
  • Design and manage drone-based monitoring plans, including logistics, permitting, biodiversity indicators, and data workflows.
  • Apply generative AI for literature review, project planning, and code development in Google Earth Engine, while integrating ethical practices.
  • Create data governance frameworks that address sovereignty, responsible use, and effective communication to decision-makers.
  • Develop an applied workflow that integrates ecological data with stakeholder input to inform conservation decisions.

Once you complete this course, you'll have foundational, hands-on experience to confidently keep pace with the latest technologies and apply them to real-world conservation and biodiversity restoration challenges. 

This program was developed with expertise from the following:

  • Jiwei Li, Assistant Professor, School of Ocean Futures
  • Max Wright, Director of Spatial Planning and Priority Setting, Conservation International. 
  • Carly Batist, Nature Tech & AI Innovation Manager, Conservation International
  • Yash Pachchigar, AI Innovation Specialist, ASU Learning Enterprise

Course Modules

Meet your instructors, explore the course structure, and get familiar with designing conservation projects. Begin identifying and connect it to a scenario or issue you're ready to influence.

Certificate programs

This course is a part of the following certificate programs:

Global Conservation Leadership (Technology and Finance)
Global Conservation Leadership (Technology and Finance)
$997
Global Conservation Leadership (Tourism and Technology)
Global Conservation Leadership (Tourism and Technology)
$997
Global Conservation Leadership (Forestry and Technology)
Global Conservation Leadership (Forestry and Technology)
$997
Global Conservation Leadership (Technology and Indigenous Knowledges)
Global Conservation Leadership (Technology and Indigenous Knowledges)
$997
Global Conservation Leadership (Technology and Habitat Mapping)
Global Conservation Leadership (Technology and Habitat Mapping)
$997

Who this course is designed for

  • Data specialists interested in developing knowledge and skills in using geospatial, remote sensing and field survey data.
  • Directors or managers preparing to lead conservation initiatives that leverage emerging technologies for conservation planning.
  • Resource managers looking to evolve AI and GIS skills to track and manage natural resources and communicate conservation needs to decision-makers.
  • Data analysts seeking to transition to roles that collect, analyze, and interpret environmental data for more effective conservation-related decision-making.
  • Wildlife researchers interested in expanding their technological skills in GIS, remote sensing, and drone monitoring.

Outcomes

By the end of this course, you’ll be able to:

  • Use foundational skills in GIS, remote sensing, drone technology and AI to support ecological restoration and conservation decision-making.
  • Interpret spatial and satellite data, select appropriate technologies for monitoring and modeling, and evaluate outputs in alignments with conservation goals.
  • Identify restoration priorities, design basic monitoring plans, and understand data governance in cross-sector contexts.

Practical skills you will develop

This program equips learners with vital skills to thrive in today's complex workforce. Key skills include:

Artificial intelligence
Environmental data analysis
Drone operation
Unmanned aerial systems
Remote sensing
Geographic information systems (GIS)

These skills directly apply to these careers

Geographer

Studies the Earth's surface using GIS and spatial analysis for planning and conservation.

Median Salary: $92,040

Natural Sciences Manager

Plans and directs scientific research, including tech integration for environmental programs.

Median Salary: $161,180

Program support

Contact
Have additional questions?

Please reach out to the program administrators ConservationFuturesAcademy@exchange.asu.edu for assistance with your course content related questions.

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