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Application of GIS in
AGRICULTU
RE
3rd
Student: Aitaj Jafarova
04
03
Application
GIS in
Sustainability
Used tools
Remote sensing and
GPS
01
Table of contents
GIS in
Agriculture
Intro
02
01
What Is GIS
In
Agriculture?
• GIS is a tool that lets users create
multi-layered interactive maps that
can be used for the visualization
of complex data and for spatial
analysis.
• How is GIS related to
agriculture?
The use of GIS in agriculture
enables farmers to map field data,
organize and analyze it, and
monitor their crops remotely.
What is GIS in Agriculture?
• With the use of GIS, farmers may
maximize their land’s potential in terms
of yield increase and financial savings,
not to mention reduced environmental
effects.
• The scope of modern agriculture has
expanded beyond domestic farmlands
to encompass the entire planet. This is
why GIS solutions with constant multi-
factor danger assessments are so
crucial in today’s agriculture.
How does GIS improve agriculture?
02
GIS Data :
How it is
done?
Agricultural GIS Data:
Where It Comes From And How It’s Processed
• Hardware, software, and
information all come together in GIS
technology.
• Any device, from a simple laptop or
desktop computer to something
more complex like a satellite or a
drone, can serve as the hardware.
• GIS software utilizes maps to
display spatial data.
• Images are created using a
variety of GIS technologies and
then linked to relevant maps and
data that is hidden from view.
• What you end up with is a map
not only showing the location
and overall health of your crops
but also taking into account
other relevant factors such as
terrain, soil type, and
fertilization.
• Remote sensing involves aerial or
satellite scans of the Earth’s
surface.
• The Landsat 8 is an observation
satellite that orbits Earth every 16
days.
• It records nine visible light bands
helping assess crop health, nutrient
content, insect infestation, or
moisture.
• Not only does Landsat 8 record
visible light, but also invisible to the
human eye thermal infrared
radiation (TIR)
Remote Sensing
• GPS and GIS integration lets farmers
collect real-time data, including
position.
• In other words, agriculture producers
may boost resource utilization
efficiency by employing gadgets to
precisely plot where to use these
resources on a given farm.
• GPS-enabled field mapping helps
analyze crop varieties, elevation
levels, field boundaries, irrigation
systems, etc.
GPS
03
Application of
GIS
The number of GIS applications in
agriculture has exploded in recent
years thanks to technological
advancements.
Presicion agriculture
• Precision agriculture GIS software
provides detailed vegetation and
productivity maps, including crop
information, for making reasonable
decisions.
• Agriculture GIS tools can identify
vegetation levels in your field or any of its
areas.
• Agriculture machinery can then use this
information to adjust seed, nutrients,
herbicides, and fertilizer amounts for
each plot.
Productivity map based on historical data,
identifying more and less productive areas in the
field.
Agriculture Mapping
● Soil and crop analysis can be facilitated
by satellite sensors, allowing the creation
of soil index maps and maps of
vegetation indices such as the
Normalized Difference Vegetation Index
(NDVI).
● Agriculture GIS mapping aids field
monitoring and management for
successful crop production
Comparing the NDVI and MSAVI indices to
assess vegetation at an early stage of crop
development.
Crop Health Monitoring
• Manually checking crops across a large area is the
slowest and most labor-intensive method of
monitoring crop health.
• Remote sensing and GIS in agriculture are lifesavers
for this.
• GIS-based precision agriculture can help you
prioritize which crops need extra care.
• Imagery sensors on satellites and aircraft provide an
advanced method for monitoring crop temperatures.
• An abnormally high temperature could indicate
disease, pest infestation, or dehydration.
Livestock Monitoring
• Agriculture GIS software is
essential for tracking
animals’ movements in
animal husbandry.
• GIS agriculture tools help
farmers locate livestock on a
farm and monitor their health,
growth, fertility, and nutrition.
• Animal trackers and a
portable device that can
receive and display tracker
data enable this application.
Insect And Pest Control
• Crop Monitoring aids in detecting
various risks, from weeds to crop
diseases, by using field-collected
vegetation indices.
• If the index map indicates low
vegetation in a small area,
meaning the possible presence of
a parasite or disease there, a scout
no longer has to investigate a large
field.
• After identifying the probable
infection zone using the vegetation
index, you can use the Scouting
feature to narrow your target area.
Identifying areas of low vegetation in the field to
minimize the area for inspection with EOSDA
Crop Monitoring.
• Dry spells, as well as extreme precipitation in
low-lying areas without adequate drainage, can
ruin crop output.
• Through agriculture GIS technology, farmers
may assess the degree of water
stress experienced by each crop and recognize
visual patterns that suggest an oversupply or
deficiency of water, which can be used to
regulate irrigation.
Irrigation Control
04
GIS in
sustainable
agriculture
● With the growing population, ensuring that
there will always be enough food for everybody
is critical.
● With the help of GIS technology, governments,
activists, scientists, and agriculture producers
may study and develop methods to ensure
food supply and, by extension, the survival of
the human species.
● For instance, the Food and Agriculture
Organization (FAO) has been using GIS and
other geospatial technologies to establish
sustainable food systems worldwide for over
30 years.
GIS and Sustainable Agriculture
• monitor water supplies and forecast
droughts;
• estimate and predict yields;
• evaluate the economic and
environmental effects of human
activities
• combine and analyze agriculture data
from several sources;
• share data and maps between
departments and organizations;
• serve as an online information and
guidance resource for local
communities.
Organizations working on sustainable development use
GIS to:
CREDITS: This presentation template was created
by Slidesgo, including icons by Flaticon and
infographics & images by Freepik
Thanks!
Does anyone have any
questions?
aceferova4@std.beu.edu.az
Vectors
● https://mapscaping.com/agricultural-applications-of-gis/
● https://www.geograma.com/en/blog/8-applications-of-gis-
in-agriculture/
● https://eos.com/blog/gis-in-agriculture/
Photos
● Google.com
Resources

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Application of GIS in Agriculture 2023.pptx

  • 1. Application of GIS in AGRICULTU RE 3rd Student: Aitaj Jafarova
  • 2. 04 03 Application GIS in Sustainability Used tools Remote sensing and GPS 01 Table of contents GIS in Agriculture Intro 02
  • 4. • GIS is a tool that lets users create multi-layered interactive maps that can be used for the visualization of complex data and for spatial analysis. • How is GIS related to agriculture? The use of GIS in agriculture enables farmers to map field data, organize and analyze it, and monitor their crops remotely. What is GIS in Agriculture?
  • 5. • With the use of GIS, farmers may maximize their land’s potential in terms of yield increase and financial savings, not to mention reduced environmental effects. • The scope of modern agriculture has expanded beyond domestic farmlands to encompass the entire planet. This is why GIS solutions with constant multi- factor danger assessments are so crucial in today’s agriculture. How does GIS improve agriculture?
  • 6. 02 GIS Data : How it is done?
  • 7. Agricultural GIS Data: Where It Comes From And How It’s Processed • Hardware, software, and information all come together in GIS technology. • Any device, from a simple laptop or desktop computer to something more complex like a satellite or a drone, can serve as the hardware. • GIS software utilizes maps to display spatial data. • Images are created using a variety of GIS technologies and then linked to relevant maps and data that is hidden from view. • What you end up with is a map not only showing the location and overall health of your crops but also taking into account other relevant factors such as terrain, soil type, and fertilization.
  • 8. • Remote sensing involves aerial or satellite scans of the Earth’s surface. • The Landsat 8 is an observation satellite that orbits Earth every 16 days. • It records nine visible light bands helping assess crop health, nutrient content, insect infestation, or moisture. • Not only does Landsat 8 record visible light, but also invisible to the human eye thermal infrared radiation (TIR) Remote Sensing
  • 9. • GPS and GIS integration lets farmers collect real-time data, including position. • In other words, agriculture producers may boost resource utilization efficiency by employing gadgets to precisely plot where to use these resources on a given farm. • GPS-enabled field mapping helps analyze crop varieties, elevation levels, field boundaries, irrigation systems, etc. GPS
  • 11. The number of GIS applications in agriculture has exploded in recent years thanks to technological advancements.
  • 12. Presicion agriculture • Precision agriculture GIS software provides detailed vegetation and productivity maps, including crop information, for making reasonable decisions. • Agriculture GIS tools can identify vegetation levels in your field or any of its areas. • Agriculture machinery can then use this information to adjust seed, nutrients, herbicides, and fertilizer amounts for each plot. Productivity map based on historical data, identifying more and less productive areas in the field.
  • 13. Agriculture Mapping ● Soil and crop analysis can be facilitated by satellite sensors, allowing the creation of soil index maps and maps of vegetation indices such as the Normalized Difference Vegetation Index (NDVI). ● Agriculture GIS mapping aids field monitoring and management for successful crop production Comparing the NDVI and MSAVI indices to assess vegetation at an early stage of crop development.
  • 14. Crop Health Monitoring • Manually checking crops across a large area is the slowest and most labor-intensive method of monitoring crop health. • Remote sensing and GIS in agriculture are lifesavers for this. • GIS-based precision agriculture can help you prioritize which crops need extra care. • Imagery sensors on satellites and aircraft provide an advanced method for monitoring crop temperatures. • An abnormally high temperature could indicate disease, pest infestation, or dehydration.
  • 15. Livestock Monitoring • Agriculture GIS software is essential for tracking animals’ movements in animal husbandry. • GIS agriculture tools help farmers locate livestock on a farm and monitor their health, growth, fertility, and nutrition. • Animal trackers and a portable device that can receive and display tracker data enable this application.
  • 16. Insect And Pest Control • Crop Monitoring aids in detecting various risks, from weeds to crop diseases, by using field-collected vegetation indices. • If the index map indicates low vegetation in a small area, meaning the possible presence of a parasite or disease there, a scout no longer has to investigate a large field. • After identifying the probable infection zone using the vegetation index, you can use the Scouting feature to narrow your target area. Identifying areas of low vegetation in the field to minimize the area for inspection with EOSDA Crop Monitoring.
  • 17. • Dry spells, as well as extreme precipitation in low-lying areas without adequate drainage, can ruin crop output. • Through agriculture GIS technology, farmers may assess the degree of water stress experienced by each crop and recognize visual patterns that suggest an oversupply or deficiency of water, which can be used to regulate irrigation. Irrigation Control
  • 19. ● With the growing population, ensuring that there will always be enough food for everybody is critical. ● With the help of GIS technology, governments, activists, scientists, and agriculture producers may study and develop methods to ensure food supply and, by extension, the survival of the human species. ● For instance, the Food and Agriculture Organization (FAO) has been using GIS and other geospatial technologies to establish sustainable food systems worldwide for over 30 years. GIS and Sustainable Agriculture
  • 20. • monitor water supplies and forecast droughts; • estimate and predict yields; • evaluate the economic and environmental effects of human activities • combine and analyze agriculture data from several sources; • share data and maps between departments and organizations; • serve as an online information and guidance resource for local communities. Organizations working on sustainable development use GIS to:
  • 21. CREDITS: This presentation template was created by Slidesgo, including icons by Flaticon and infographics & images by Freepik Thanks! Does anyone have any questions? aceferova4@std.beu.edu.az