SlideShare una empresa de Scribd logo
1 de 22
IoT IN AGRICULTURE
Submitted to:-
Dr. Nagma Halima Saik &
Department of Agricultural extension and communication
Siksha ‘O’ Anusandhan University
(Faculty of Agricultural Science)
IOT in agriculture
1
Submitted By :-
2141901288:- Durba khatua
2141901289:- Dolon Ghosh
2141901290:- BARSHAN MAHAPATRA
2141901291:- BARENYA DASH
2141901293:- BISMAYJIT GHANA
2141901294:- BAPPA CHOWDHURY
IOT in agriculture
2
Topics to be discussed
 Introduction to IoT
 Different IoT components
 IoT applications in Agriculture.
a) Smart Irrigation Systems and Water Management
b) Green house Automation and Smart Pest control
c) Precision Agriculture and Crop Monitoring
d) Livestock Monitoring and Health Management
e) Soil Monitoring and Nutrient Management
f) Crop Yield Optimization and Predictive Analytics
 Benefits of IoT in Agriculture
 Challenges and Limitations of IoT in Agriculture
 Case Studies and Success Stories, Statistics, graph etc.
 Future Trends and Opportunities
 Conclusion
IOT in agriculture
3
INTRODUCTION
IoT stands for ‘Internet of Things’.
The global population is steadily increasing, while farmers are finding it harder and harder to supply more people
with food. According to the “Global agriculture towards 2050” report by the Food and Agriculture Organization
(FAO) of the United Nations, the global population is expected to grow to 9 billion by 2050. This means that demand
for food will increase as well.
The global agriculture market is expected to grow from $9600 billion in 2020 to $10180 billion in 2021 at a CAGR of
6%. But despite the fast growth of the agricultural sector, the world needs it to grow faster. According to FAO, in
2050, farmers will have to produce 70% more food than in 2016 to keep the population fed, and this puts lots of
pressure on farmers.
Technology has come to the rescue in lots of industries, and agriculture is one of them. Farms and agricultural
of them. Farms and agricultural businesses incorporate lots of technologies into their work, from big data and
into their work, from big data and machine learning for forecasting and efficiency to autonomous robots, sensors,
efficiency to autonomous robots, sensors, and drones. This is called smart agriculture.
IOT in agriculture 4
IOT DEVICES
 Robots
 Drones
 Various sensors
 Thermostats
 GPS tracking devices
IOT in agriculture
5
APPLICATIONS OF IoT IN AGRICULTURE
1. SMART IRRIGATION SYSTEM AND WATER MANAGEMENT :-
 A smart irrigation system saves about 80% of the water.
 It precisely controls water system by using a sensor micro controller
system.
 It estimates and measure diminution of existing plant moisture to operate
an irrigation system.
 Intelligent automatic plant irrigation system waters plants regularly using
a moisture sensor.
 The system uses a hardware component, which is subjected to variation
with the environmental conditions.
 A valuable tool for conserving water planning and irrigation scheduling of
various agricultural crops.
IOT in agriculture 6
2. GREEN HOUSE AUTOMATION :-
By implementing a smart greenhouse monitoring system, the Internet of
Things helps maintain optimal conditions for healthy plant growth, saving
you time and effort.
 Light: Adjusting artificial lighting to supplement natural light levels.
 Air quality : Filters the air .
 Ventilation: Helps in automating ventilation systems and adjust them
based on environmental conditions.
 Temperature: Adjust heating systems to preserve the ideal temperature
range.
 Humidity: IoT sensors detect changes in humidity and accommodate
irrigation systems and misting systems to maintain the perfect
environmental conditions.
APPLICATIONS OF IoT IN AGRICULTURE
IOT in agriculture 7
3. PRECISION AGRICULTURE :-
APPLICATIONS OF IoT IN AGRICULTURE
 It makes the farming practice more precise by using smart farming
applications.
 The goal of precision farming is to analyse the data, generated via sensors, to
react accordingly.
 Use of various technologies like GPS, GIS, sensors, aerial devices, or field
mapping to increase production levels, and improve profitability.
 Improved Agriculture Monitoring: Monitor fields more effectively by tracking
various parameters.
 Unified farming data: To store large agricultural data in one place using cloud-
based technology.
 Better Decision-Making: Timely response to disasters.
IOT in agriculture 8
1.Sensor Integration for Real-Time Monitoring:
1. Implement various sensors, such as temperature,
humidity, and heart rate monitors, on livestock to
collect real-time data.
2. IoT devices can transmit this data wirelessly to a
centralized system for instant monitoring.
2.Automated Alerts and Notifications:
1. Set up automated alert systems to notify farmers or
caretakers instantly when abnormal conditions or
health issues are detected.
2. Alerts can be sent through mobile applications or
other communication channels, allowing for timely
response to critical situations.
3.Remote Health Management and Decision Support:
1. Develop a centralized dashboard accessible remotely,
providing farmers with a comprehensive view of the
livestock's health status.
2. Incorporate decision support systems that offer
recommendations based on data analysis, helping
farmers make informed decisions regarding veterinary
care, nutrition, or environmental adjustments.
4. Livestock Monitoring and Health Management :-
APPLICATIONS OF IoT IN AGRICULTURE
IOT in agriculture 9
1. Sensor Integration and Deployment:
- Implement IoT-enabled soil sensors to collect real-time data on
key soil parameters such as moisture levels, temperature, pH, and
nutrient content.
2. Data Analytics and Decision Support:
- Utilize cloud-based platforms for data storage and analytics to
process the large volumes of information generated by the soil
sensors.
- Implement machine learning algorithms to analyse the data and
provide insights into soil health, nutrient deficiencies, and optimal
conditions for plant growth.
3. Automated Nutrient Delivery Systems:
- Integrate IoT technology with precision agriculture tools to
automate the delivery of fertilizers and nutrients based on real-time
soil data.
- Enable remote monitoring and control of nutrient application
systems through mobile or web applications, allowing farmers to
make informed decisions and adjustments in real time.
5. Soil monitoring and nutrient management :-
APPLICATIONS OF IoT IN AGRICULTURE
IOT in agriculture
10
 Sensor Integration and Data Collection:
In IoT-based crop yield optimization, the integration of various sensors plays a
crucial role. Sensors such as soil moisture sensors, temperature and humidity
sensors, and spectral imaging devices can be deployed across the agricultural
field to collect real-time data. These sensors continuously monitor the
environmental conditions and crop health, providing a comprehensive dataset.
 Predictive Analytics and Machine Learning Algorithms:
Leveraging predictive analytics and machine learning algorithms on the collected
data enables farmers to make informed decisions. By analyzing historical data,
weather patterns, and current sensor readings, predictive models can forecast
crop growth, detect potential diseases, and predict optimal harvesting times. This
allows for proactive management and optimization of crop yield.
 Automation and Control Systems:
Integrating IoT with automation and control systems allows for real-time
adjustments based on the predictive analytics. Automated irrigation systems,
nutrient delivery systems, and pest control mechanisms can be triggered based on
the insights gained from the data analysis. This not only optimizes resource usage
but also ensures timely interventions, leading to improved crop yield and resource
efficiency.
6. Crop yield optimization and predictive analysis :-
APPLICATIONS OF IoT IN AGRICULTURE
IOT in agriculture 11
Benefits of IoT in Agriculture
 Intelligent Data Collection :-
The devices monitor climatic conditions, soil composition and quality, crop health, and so on. Moreover, the data is stored and
processed automatically.
 Waste reduction :-
IoT devices will help save crops. Farmers use sensors that can detect infections, infestations, or insect damage at an early stage.
 Less Energy Consumption :-
Optimize the use of resources (water, energy, land area) using the Internet of
Things. Sensors will collect information for you in real-time.
 Improved Production Control :-
The IoT-enabled agriculture solutions will help you achieve your main goal. Your farm
will function as right as rain thanks to the high quality of products.
 Competitive Advantage :-
Stay one step ahead with IoT technologies. Your crop will have a higher quality. You will be able to grow and harvest more products.
IOT in agriculture 12
Challenges and limitation of iot in agriculture:
 Lack of Infrastructure:- Even if the farmers adopt IoT technology they won’t be able to take
benefit of this technology due to poor communication infrastructure.
 High Cost :- Equipment needed to implement IoT in agriculture is expensive to earn higher
profits.
 Lack of Security:- Since IoT devices interact with older equipment they have access to the
internet connection, there is no guarantee.
 lack of information :- users/ farmers doesn’t have enough knowledge to operating the
machines.
IOT in agriculture
13
WORLD WIDE GRAPHICAL ANALYSIS
IoT introduced smart agriculture to us. Through IoT the
adoption of IOT in agriculture is constantly growing.
COVID -19; has had a positive impact on IoT in
Agriculture market share. Disruption in supply chain,
shorted of qualified workers, has propelled it’s CAGR to
99%. In fact as per cent reports the smart farming
market share is set to reach $28.56 billion by 2030. At
the same time, the global smart agriculture market size
is expected to triple by 2025, reaching $15.3 billion .
Case Studies and Success Stories
IOT in agriculture
14
24 AGRICULTURE START-UPS RECOMMENDED FOR
SUPPORT FROM POOL OF RS 20 CRORE :
In a boost to Agri–tech sector experts have
recommended addicted fund of rs 20 crore.
This initiative, aimed at accelerating promising ideas
was announced during the ATMAN (Agri startup demo
And funding ) 2023 programme, organised by DST. The
program also launched several initiatives, including the
grand challenge & competition for internet of things .
IOT in agriculture 15
Farmers are merging intuition and expertise with
data from satellites to capture subtle changes at
field level. Planet’s long-standing partner Granular
is leveraging high-frequency Planet Scope imagery
to help farmers increase yields and manage risk.
Discover how Granular is helping farmers make
timely interventions with Planet data. Farmer in
the field using Granular Insights.
Photo credit: Granular
HOW GRANULAR DELIVERS FAST, FREQUENT, IN-FIELD INSIGHTS TO
FARMERS IN AN AGE OF TECHNOLOGY,
IOT in agriculture 16
PM MODI INAUGURATES INDIA’S BIGGEST DRONE
MAHOTSAV 2022 IN NEW DELHI :
On May 27, 2022 , Prime Minister ( PM ) Narendra Modi
Inaugurated India’s biggest Drone Festival, Bharat Drone
Mahotsav 2022, at pragati Maidan in New Delhi. During the
Mahotsav, the PM met with kisan drone pilots, watched open
air demonstrations & also interacted with start – ups at the
drone exhibition center.
He added, “This event is not just for drones, but also for the
positivity towards new technology and innovation in India.
Notably, the country’s biggest drone festival comes amid the
Centre’s push for extensive use of drones in various fields,
including agriculture. Earlier this month, Civil Aviation minister
Jyotiraditya Scindia had launched a drone experience studio at
the state-run think tank NITI Aayog, where he unveiled two
policies — Drone Shakti and Kisan Drone.
IOT in agriculture
17
FUTURE TRENDS
 In agriculture, IoT trends include precision farming, sensor technology for
crop monitoring, smart irrigation systems, and livestock tracking. These
technologies aim to enhance efficiency, reduce resource usage, and optimize
overall farm management through data-driven insights.
IOT in agriculture
18
FUTURESCOPE OF IoT
 Precision farming :-
In agriculture, Information and Communication Technology is a
tool used for smart farming. With the help of IoT-based devices,
crop fields are observed. The technology uses sensors to calculate
the moisture of soil, humidity, and temperature. Also, it uses an
automated irrigation system to make efficient use of water.
Precision farming helps farmers monitor their fields and boost
productivity.
 Agricultural drones :-
Drones used for agriculture and farming are one of the best
applications of Internet of Things. They are used to enhance
agricultural processes. We use agricultural drones for planting
crops, irrigating fields, spraying of pesticides, and monitoring the
fields. With the help of drones, it becomes easier to evaluate the
health of crops. This is all possible with the help of smart IoT-based
devices that are used to make agricultural drones.
IOT in agriculture
19
 Smart greenhouses :-
Farmers use greenhouse farming to enhance the productivity of crops.
In greenhouse farming, the environmental factors that affect the growth
of crops are controlled by manual intervention. However, manually
controlling the mechanism for the growth of crops is less productive. The
emergence of IoT and technological advancements has led to the
creation of IoT-based greenhouses that consist of various devices such as
sensors, climate controllers, etc.
IOT in agriculture
20
CONCLUSION
 In conclusion, IoT in agriculture offers significant potential for increased efficiency, productivity, and
sustainability. By integrating smart devices, sensors, and data analytics, farmers can make informed
decisions, optimize resource usage, and enhance crop yields. However, challenges such as cost, data security,
and infrastructure need to be addressed for widespread adoption. Overall, the continued development and
implementation of IoT technologies hold promise for transforming and modernizing the agricultural sector.
IOT in agriculture
21
IOT in agriculture
22

Más contenido relacionado

La actualidad más candente

Smart farming using ardunio.pptx
Smart farming using ardunio.pptxSmart farming using ardunio.pptx
Smart farming using ardunio.pptxShivang Rana
 
20 uses cases - Artificial Intelligence and Machine Learning in agriculture ...
20 uses cases - Artificial Intelligence and Machine Learning  in agriculture ...20 uses cases - Artificial Intelligence and Machine Learning  in agriculture ...
20 uses cases - Artificial Intelligence and Machine Learning in agriculture ...Victor John Tan
 
IOT in Agriculture slide.pptx
IOT in Agriculture slide.pptxIOT in Agriculture slide.pptx
IOT in Agriculture slide.pptxDHANPDGHALE
 
AI IN AGRICULTURE modified 1.pptx
AI IN AGRICULTURE modified 1.pptxAI IN AGRICULTURE modified 1.pptx
AI IN AGRICULTURE modified 1.pptxKanchetiSaiNikhitha
 
Artificial Intelligence in Agriculture
Artificial Intelligence in AgricultureArtificial Intelligence in Agriculture
Artificial Intelligence in Agricultureijtsrd
 
AI in Agriculture ppt
AI in Agriculture pptAI in Agriculture ppt
AI in Agriculture pptRADO7900
 
GIS Taiwan 2015 U++ competition
GIS Taiwan 2015 U++ competitionGIS Taiwan 2015 U++ competition
GIS Taiwan 2015 U++ competitionting11222001
 
IoT (Internet of Things)- Based Smart Farming
IoT (Internet of Things)- Based Smart FarmingIoT (Internet of Things)- Based Smart Farming
IoT (Internet of Things)- Based Smart FarmingChakravarthy Thejesh
 
IoT Application in Agriculture
IoT Application in AgricultureIoT Application in Agriculture
IoT Application in AgricultureUTKARSH DWIVEDI
 
Smart digital farming
Smart digital farmingSmart digital farming
Smart digital farmingClusteriX20
 
Internet of Things & Its application in Smart Agriculture
Internet of Things & Its application in Smart AgricultureInternet of Things & Its application in Smart Agriculture
Internet of Things & Its application in Smart AgricultureMohammad Zakriya
 
IOT based smart agriculture monitoring.pptx
IOT based smart agriculture monitoring.pptxIOT based smart agriculture monitoring.pptx
IOT based smart agriculture monitoring.pptxKaRtHiCkR859827
 
IOT IN AGRICULTURE.pptx
IOT IN AGRICULTURE.pptxIOT IN AGRICULTURE.pptx
IOT IN AGRICULTURE.pptxABSGaming2
 

La actualidad más candente (20)

3 ai use cases in agriculture
3 ai use cases in agriculture3 ai use cases in agriculture
3 ai use cases in agriculture
 
Smart farming using ardunio.pptx
Smart farming using ardunio.pptxSmart farming using ardunio.pptx
Smart farming using ardunio.pptx
 
20 uses cases - Artificial Intelligence and Machine Learning in agriculture ...
20 uses cases - Artificial Intelligence and Machine Learning  in agriculture ...20 uses cases - Artificial Intelligence and Machine Learning  in agriculture ...
20 uses cases - Artificial Intelligence and Machine Learning in agriculture ...
 
IOT in Agriculture slide.pptx
IOT in Agriculture slide.pptxIOT in Agriculture slide.pptx
IOT in Agriculture slide.pptx
 
AI IN AGRICULTURE modified 1.pptx
AI IN AGRICULTURE modified 1.pptxAI IN AGRICULTURE modified 1.pptx
AI IN AGRICULTURE modified 1.pptx
 
Artificial Intelligence in Agriculture
Artificial Intelligence in AgricultureArtificial Intelligence in Agriculture
Artificial Intelligence in Agriculture
 
IOT BASED SMART AGRICULTURE
IOT BASED SMART AGRICULTUREIOT BASED SMART AGRICULTURE
IOT BASED SMART AGRICULTURE
 
AI in Agriculture ppt
AI in Agriculture pptAI in Agriculture ppt
AI in Agriculture ppt
 
IoT in Agriculture
IoT in AgricultureIoT in Agriculture
IoT in Agriculture
 
GIS Taiwan 2015 U++ competition
GIS Taiwan 2015 U++ competitionGIS Taiwan 2015 U++ competition
GIS Taiwan 2015 U++ competition
 
SMART FARMING USING IOT
SMART FARMING USING IOTSMART FARMING USING IOT
SMART FARMING USING IOT
 
IoT (Internet of Things)- Based Smart Farming
IoT (Internet of Things)- Based Smart FarmingIoT (Internet of Things)- Based Smart Farming
IoT (Internet of Things)- Based Smart Farming
 
IoT Application in Agriculture
IoT Application in AgricultureIoT Application in Agriculture
IoT Application in Agriculture
 
Data analytics for agriculture
Data analytics for agricultureData analytics for agriculture
Data analytics for agriculture
 
Smart digital farming
Smart digital farmingSmart digital farming
Smart digital farming
 
Internet of Things & Its application in Smart Agriculture
Internet of Things & Its application in Smart AgricultureInternet of Things & Its application in Smart Agriculture
Internet of Things & Its application in Smart Agriculture
 
IOT based smart agriculture monitoring.pptx
IOT based smart agriculture monitoring.pptxIOT based smart agriculture monitoring.pptx
IOT based smart agriculture monitoring.pptx
 
IOT IN AGRICULTURE.pptx
IOT IN AGRICULTURE.pptxIOT IN AGRICULTURE.pptx
IOT IN AGRICULTURE.pptx
 
Ai in agriculture
Ai in agricultureAi in agriculture
Ai in agriculture
 
Smart farming using IOT
Smart farming using IOTSmart farming using IOT
Smart farming using IOT
 

Similar a IoT in Agriculture

Do you know about the Smart Farming in India
Do you know about the Smart Farming in IndiaDo you know about the Smart Farming in India
Do you know about the Smart Farming in IndiaShreyaSri6
 
The Basics of Smart Farming: How Is IoT Used in Agriculture? | GQ Research
The Basics of Smart Farming: How Is IoT Used in Agriculture? | GQ ResearchThe Basics of Smart Farming: How Is IoT Used in Agriculture? | GQ Research
The Basics of Smart Farming: How Is IoT Used in Agriculture? | GQ ResearchGQ Research
 
8 applications of IOT in agriculture for smart farming
8 applications of IOT in agriculture for smart farming8 applications of IOT in agriculture for smart farming
8 applications of IOT in agriculture for smart farmingkalyanit6
 
iot in agriculture
iot in agricultureiot in agriculture
iot in agricultureMufty3
 
A review of the literature on IOT-based smart agriculture monitoring and cont...
A review of the literature on IOT-based smart agriculture monitoring and cont...A review of the literature on IOT-based smart agriculture monitoring and cont...
A review of the literature on IOT-based smart agriculture monitoring and cont...IRJET Journal
 
FAO-ITU_China__Wu_Yin__Final_Revision.pdf
FAO-ITU_China__Wu_Yin__Final_Revision.pdfFAO-ITU_China__Wu_Yin__Final_Revision.pdf
FAO-ITU_China__Wu_Yin__Final_Revision.pdfGeorge K. Karagiannidis
 
Application of IOT in Smart Agriculture
Application of IOT in Smart AgricultureApplication of IOT in Smart Agriculture
Application of IOT in Smart Agriculturenazimshaikh29
 
Latest Innovations in AgriTech Industry
Latest Innovations in AgriTech IndustryLatest Innovations in AgriTech Industry
Latest Innovations in AgriTech IndustryPritiranjanMaharana1
 
IOT-ENABLED SMART AGRICULTURE SYSTEM WITH DEEP LEARNING FOR THE IDENTIFICATIO...
IOT-ENABLED SMART AGRICULTURE SYSTEM WITH DEEP LEARNING FOR THE IDENTIFICATIO...IOT-ENABLED SMART AGRICULTURE SYSTEM WITH DEEP LEARNING FOR THE IDENTIFICATIO...
IOT-ENABLED SMART AGRICULTURE SYSTEM WITH DEEP LEARNING FOR THE IDENTIFICATIO...POOJASHREEC1
 
IRJET- Smart Farming using IoT
IRJET- Smart Farming using IoTIRJET- Smart Farming using IoT
IRJET- Smart Farming using IoTIRJET Journal
 
IRJET- IoT Enabled Precision Crop Field Monitoring System
IRJET-  	  IoT Enabled Precision Crop Field Monitoring SystemIRJET-  	  IoT Enabled Precision Crop Field Monitoring System
IRJET- IoT Enabled Precision Crop Field Monitoring SystemIRJET Journal
 
Revolutionizing Agriculture: The Role of Industrial Wireless Sensors
Revolutionizing Agriculture: The Role of Industrial Wireless SensorsRevolutionizing Agriculture: The Role of Industrial Wireless Sensors
Revolutionizing Agriculture: The Role of Industrial Wireless SensorsUbiBot
 
Smart Agriculture The Future of Farming.pdf
Smart Agriculture The Future of Farming.pdfSmart Agriculture The Future of Farming.pdf
Smart Agriculture The Future of Farming.pdfUbiBot
 
Paul _smart_cultivation_by_remote_monitoring
 Paul _smart_cultivation_by_remote_monitoring Paul _smart_cultivation_by_remote_monitoring
Paul _smart_cultivation_by_remote_monitoringsujit Biswas
 
IRJET - Poultry Farm Controlling based on IoT
IRJET -  	  Poultry Farm Controlling based on IoTIRJET -  	  Poultry Farm Controlling based on IoT
IRJET - Poultry Farm Controlling based on IoTIRJET Journal
 
Smart system monitoring on soil using internet of things (IOT)
Smart system monitoring on soil using internet of things (IOT)Smart system monitoring on soil using internet of things (IOT)
Smart system monitoring on soil using internet of things (IOT)IRJET Journal
 

Similar a IoT in Agriculture (20)

Do you know about the Smart Farming in India
Do you know about the Smart Farming in IndiaDo you know about the Smart Farming in India
Do you know about the Smart Farming in India
 
BBAU . PPT.pptx
BBAU . PPT.pptxBBAU . PPT.pptx
BBAU . PPT.pptx
 
The Basics of Smart Farming: How Is IoT Used in Agriculture? | GQ Research
The Basics of Smart Farming: How Is IoT Used in Agriculture? | GQ ResearchThe Basics of Smart Farming: How Is IoT Used in Agriculture? | GQ Research
The Basics of Smart Farming: How Is IoT Used in Agriculture? | GQ Research
 
8 applications of IOT in agriculture for smart farming
8 applications of IOT in agriculture for smart farming8 applications of IOT in agriculture for smart farming
8 applications of IOT in agriculture for smart farming
 
iot in agriculture
iot in agricultureiot in agriculture
iot in agriculture
 
A review of the literature on IOT-based smart agriculture monitoring and cont...
A review of the literature on IOT-based smart agriculture monitoring and cont...A review of the literature on IOT-based smart agriculture monitoring and cont...
A review of the literature on IOT-based smart agriculture monitoring and cont...
 
FAO-ITU_China__Wu_Yin__Final_Revision.pdf
FAO-ITU_China__Wu_Yin__Final_Revision.pdfFAO-ITU_China__Wu_Yin__Final_Revision.pdf
FAO-ITU_China__Wu_Yin__Final_Revision.pdf
 
Application of IOT in Smart Agriculture
Application of IOT in Smart AgricultureApplication of IOT in Smart Agriculture
Application of IOT in Smart Agriculture
 
Latest Innovations in AgriTech Industry
Latest Innovations in AgriTech IndustryLatest Innovations in AgriTech Industry
Latest Innovations in AgriTech Industry
 
IOT-ENABLED SMART AGRICULTURE SYSTEM WITH DEEP LEARNING FOR THE IDENTIFICATIO...
IOT-ENABLED SMART AGRICULTURE SYSTEM WITH DEEP LEARNING FOR THE IDENTIFICATIO...IOT-ENABLED SMART AGRICULTURE SYSTEM WITH DEEP LEARNING FOR THE IDENTIFICATIO...
IOT-ENABLED SMART AGRICULTURE SYSTEM WITH DEEP LEARNING FOR THE IDENTIFICATIO...
 
IRJET- Smart Farming using IoT
IRJET- Smart Farming using IoTIRJET- Smart Farming using IoT
IRJET- Smart Farming using IoT
 
IRJET- IoT Enabled Precision Crop Field Monitoring System
IRJET-  	  IoT Enabled Precision Crop Field Monitoring SystemIRJET-  	  IoT Enabled Precision Crop Field Monitoring System
IRJET- IoT Enabled Precision Crop Field Monitoring System
 
Ijmet 10 01_089
Ijmet 10 01_089Ijmet 10 01_089
Ijmet 10 01_089
 
Revolutionizing Agriculture: The Role of Industrial Wireless Sensors
Revolutionizing Agriculture: The Role of Industrial Wireless SensorsRevolutionizing Agriculture: The Role of Industrial Wireless Sensors
Revolutionizing Agriculture: The Role of Industrial Wireless Sensors
 
Smart Agriculture The Future of Farming.pdf
Smart Agriculture The Future of Farming.pdfSmart Agriculture The Future of Farming.pdf
Smart Agriculture The Future of Farming.pdf
 
Paul _smart_cultivation_by_remote_monitoring
 Paul _smart_cultivation_by_remote_monitoring Paul _smart_cultivation_by_remote_monitoring
Paul _smart_cultivation_by_remote_monitoring
 
IRJET - Poultry Farm Controlling based on IoT
IRJET -  	  Poultry Farm Controlling based on IoTIRJET -  	  Poultry Farm Controlling based on IoT
IRJET - Poultry Farm Controlling based on IoT
 
iot.pptx
iot.pptxiot.pptx
iot.pptx
 
Smart system monitoring on soil using internet of things (IOT)
Smart system monitoring on soil using internet of things (IOT)Smart system monitoring on soil using internet of things (IOT)
Smart system monitoring on soil using internet of things (IOT)
 
IoT IN AGRICULTURE
IoT IN AGRICULTUREIoT IN AGRICULTURE
IoT IN AGRICULTURE
 

Último

SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptxSOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptxiammrhaywood
 
The Most Excellent Way | 1 Corinthians 13
The Most Excellent Way | 1 Corinthians 13The Most Excellent Way | 1 Corinthians 13
The Most Excellent Way | 1 Corinthians 13Steve Thomason
 
Ecosystem Interactions Class Discussion Presentation in Blue Green Lined Styl...
Ecosystem Interactions Class Discussion Presentation in Blue Green Lined Styl...Ecosystem Interactions Class Discussion Presentation in Blue Green Lined Styl...
Ecosystem Interactions Class Discussion Presentation in Blue Green Lined Styl...fonyou31
 
Web & Social Media Analytics Previous Year Question Paper.pdf
Web & Social Media Analytics Previous Year Question Paper.pdfWeb & Social Media Analytics Previous Year Question Paper.pdf
Web & Social Media Analytics Previous Year Question Paper.pdfJayanti Pande
 
Q4-W6-Restating Informational Text Grade 3
Q4-W6-Restating Informational Text Grade 3Q4-W6-Restating Informational Text Grade 3
Q4-W6-Restating Informational Text Grade 3JemimahLaneBuaron
 
Measures of Dispersion and Variability: Range, QD, AD and SD
Measures of Dispersion and Variability: Range, QD, AD and SDMeasures of Dispersion and Variability: Range, QD, AD and SD
Measures of Dispersion and Variability: Range, QD, AD and SDThiyagu K
 
1029-Danh muc Sach Giao Khoa khoi 6.pdf
1029-Danh muc Sach Giao Khoa khoi  6.pdf1029-Danh muc Sach Giao Khoa khoi  6.pdf
1029-Danh muc Sach Giao Khoa khoi 6.pdfQucHHunhnh
 
Sports & Fitness Value Added Course FY..
Sports & Fitness Value Added Course FY..Sports & Fitness Value Added Course FY..
Sports & Fitness Value Added Course FY..Disha Kariya
 
social pharmacy d-pharm 1st year by Pragati K. Mahajan
social pharmacy d-pharm 1st year by Pragati K. Mahajansocial pharmacy d-pharm 1st year by Pragati K. Mahajan
social pharmacy d-pharm 1st year by Pragati K. Mahajanpragatimahajan3
 
Kisan Call Centre - To harness potential of ICT in Agriculture by answer farm...
Kisan Call Centre - To harness potential of ICT in Agriculture by answer farm...Kisan Call Centre - To harness potential of ICT in Agriculture by answer farm...
Kisan Call Centre - To harness potential of ICT in Agriculture by answer farm...Krashi Coaching
 
Advanced Views - Calendar View in Odoo 17
Advanced Views - Calendar View in Odoo 17Advanced Views - Calendar View in Odoo 17
Advanced Views - Calendar View in Odoo 17Celine George
 
Disha NEET Physics Guide for classes 11 and 12.pdf
Disha NEET Physics Guide for classes 11 and 12.pdfDisha NEET Physics Guide for classes 11 and 12.pdf
Disha NEET Physics Guide for classes 11 and 12.pdfchloefrazer622
 
Student login on Anyboli platform.helpin
Student login on Anyboli platform.helpinStudent login on Anyboli platform.helpin
Student login on Anyboli platform.helpinRaunakKeshri1
 
BASLIQ CURRENT LOOKBOOK LOOKBOOK(1) (1).pdf
BASLIQ CURRENT LOOKBOOK  LOOKBOOK(1) (1).pdfBASLIQ CURRENT LOOKBOOK  LOOKBOOK(1) (1).pdf
BASLIQ CURRENT LOOKBOOK LOOKBOOK(1) (1).pdfSoniaTolstoy
 
General AI for Medical Educators April 2024
General AI for Medical Educators April 2024General AI for Medical Educators April 2024
General AI for Medical Educators April 2024Janet Corral
 
fourth grading exam for kindergarten in writing
fourth grading exam for kindergarten in writingfourth grading exam for kindergarten in writing
fourth grading exam for kindergarten in writingTeacherCyreneCayanan
 
Z Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot GraphZ Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot GraphThiyagu K
 
A Critique of the Proposed National Education Policy Reform
A Critique of the Proposed National Education Policy ReformA Critique of the Proposed National Education Policy Reform
A Critique of the Proposed National Education Policy ReformChameera Dedduwage
 
9548086042 for call girls in Indira Nagar with room service
9548086042  for call girls in Indira Nagar  with room service9548086042  for call girls in Indira Nagar  with room service
9548086042 for call girls in Indira Nagar with room servicediscovermytutordmt
 

Último (20)

SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptxSOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
 
The Most Excellent Way | 1 Corinthians 13
The Most Excellent Way | 1 Corinthians 13The Most Excellent Way | 1 Corinthians 13
The Most Excellent Way | 1 Corinthians 13
 
Ecosystem Interactions Class Discussion Presentation in Blue Green Lined Styl...
Ecosystem Interactions Class Discussion Presentation in Blue Green Lined Styl...Ecosystem Interactions Class Discussion Presentation in Blue Green Lined Styl...
Ecosystem Interactions Class Discussion Presentation in Blue Green Lined Styl...
 
Web & Social Media Analytics Previous Year Question Paper.pdf
Web & Social Media Analytics Previous Year Question Paper.pdfWeb & Social Media Analytics Previous Year Question Paper.pdf
Web & Social Media Analytics Previous Year Question Paper.pdf
 
Q4-W6-Restating Informational Text Grade 3
Q4-W6-Restating Informational Text Grade 3Q4-W6-Restating Informational Text Grade 3
Q4-W6-Restating Informational Text Grade 3
 
Measures of Dispersion and Variability: Range, QD, AD and SD
Measures of Dispersion and Variability: Range, QD, AD and SDMeasures of Dispersion and Variability: Range, QD, AD and SD
Measures of Dispersion and Variability: Range, QD, AD and SD
 
1029-Danh muc Sach Giao Khoa khoi 6.pdf
1029-Danh muc Sach Giao Khoa khoi  6.pdf1029-Danh muc Sach Giao Khoa khoi  6.pdf
1029-Danh muc Sach Giao Khoa khoi 6.pdf
 
Sports & Fitness Value Added Course FY..
Sports & Fitness Value Added Course FY..Sports & Fitness Value Added Course FY..
Sports & Fitness Value Added Course FY..
 
Código Creativo y Arte de Software | Unidad 1
Código Creativo y Arte de Software | Unidad 1Código Creativo y Arte de Software | Unidad 1
Código Creativo y Arte de Software | Unidad 1
 
social pharmacy d-pharm 1st year by Pragati K. Mahajan
social pharmacy d-pharm 1st year by Pragati K. Mahajansocial pharmacy d-pharm 1st year by Pragati K. Mahajan
social pharmacy d-pharm 1st year by Pragati K. Mahajan
 
Kisan Call Centre - To harness potential of ICT in Agriculture by answer farm...
Kisan Call Centre - To harness potential of ICT in Agriculture by answer farm...Kisan Call Centre - To harness potential of ICT in Agriculture by answer farm...
Kisan Call Centre - To harness potential of ICT in Agriculture by answer farm...
 
Advanced Views - Calendar View in Odoo 17
Advanced Views - Calendar View in Odoo 17Advanced Views - Calendar View in Odoo 17
Advanced Views - Calendar View in Odoo 17
 
Disha NEET Physics Guide for classes 11 and 12.pdf
Disha NEET Physics Guide for classes 11 and 12.pdfDisha NEET Physics Guide for classes 11 and 12.pdf
Disha NEET Physics Guide for classes 11 and 12.pdf
 
Student login on Anyboli platform.helpin
Student login on Anyboli platform.helpinStudent login on Anyboli platform.helpin
Student login on Anyboli platform.helpin
 
BASLIQ CURRENT LOOKBOOK LOOKBOOK(1) (1).pdf
BASLIQ CURRENT LOOKBOOK  LOOKBOOK(1) (1).pdfBASLIQ CURRENT LOOKBOOK  LOOKBOOK(1) (1).pdf
BASLIQ CURRENT LOOKBOOK LOOKBOOK(1) (1).pdf
 
General AI for Medical Educators April 2024
General AI for Medical Educators April 2024General AI for Medical Educators April 2024
General AI for Medical Educators April 2024
 
fourth grading exam for kindergarten in writing
fourth grading exam for kindergarten in writingfourth grading exam for kindergarten in writing
fourth grading exam for kindergarten in writing
 
Z Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot GraphZ Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot Graph
 
A Critique of the Proposed National Education Policy Reform
A Critique of the Proposed National Education Policy ReformA Critique of the Proposed National Education Policy Reform
A Critique of the Proposed National Education Policy Reform
 
9548086042 for call girls in Indira Nagar with room service
9548086042  for call girls in Indira Nagar  with room service9548086042  for call girls in Indira Nagar  with room service
9548086042 for call girls in Indira Nagar with room service
 

IoT in Agriculture

  • 1. IoT IN AGRICULTURE Submitted to:- Dr. Nagma Halima Saik & Department of Agricultural extension and communication Siksha ‘O’ Anusandhan University (Faculty of Agricultural Science) IOT in agriculture 1
  • 2. Submitted By :- 2141901288:- Durba khatua 2141901289:- Dolon Ghosh 2141901290:- BARSHAN MAHAPATRA 2141901291:- BARENYA DASH 2141901293:- BISMAYJIT GHANA 2141901294:- BAPPA CHOWDHURY IOT in agriculture 2
  • 3. Topics to be discussed  Introduction to IoT  Different IoT components  IoT applications in Agriculture. a) Smart Irrigation Systems and Water Management b) Green house Automation and Smart Pest control c) Precision Agriculture and Crop Monitoring d) Livestock Monitoring and Health Management e) Soil Monitoring and Nutrient Management f) Crop Yield Optimization and Predictive Analytics  Benefits of IoT in Agriculture  Challenges and Limitations of IoT in Agriculture  Case Studies and Success Stories, Statistics, graph etc.  Future Trends and Opportunities  Conclusion IOT in agriculture 3
  • 4. INTRODUCTION IoT stands for ‘Internet of Things’. The global population is steadily increasing, while farmers are finding it harder and harder to supply more people with food. According to the “Global agriculture towards 2050” report by the Food and Agriculture Organization (FAO) of the United Nations, the global population is expected to grow to 9 billion by 2050. This means that demand for food will increase as well. The global agriculture market is expected to grow from $9600 billion in 2020 to $10180 billion in 2021 at a CAGR of 6%. But despite the fast growth of the agricultural sector, the world needs it to grow faster. According to FAO, in 2050, farmers will have to produce 70% more food than in 2016 to keep the population fed, and this puts lots of pressure on farmers. Technology has come to the rescue in lots of industries, and agriculture is one of them. Farms and agricultural of them. Farms and agricultural businesses incorporate lots of technologies into their work, from big data and into their work, from big data and machine learning for forecasting and efficiency to autonomous robots, sensors, efficiency to autonomous robots, sensors, and drones. This is called smart agriculture. IOT in agriculture 4
  • 5. IOT DEVICES  Robots  Drones  Various sensors  Thermostats  GPS tracking devices IOT in agriculture 5
  • 6. APPLICATIONS OF IoT IN AGRICULTURE 1. SMART IRRIGATION SYSTEM AND WATER MANAGEMENT :-  A smart irrigation system saves about 80% of the water.  It precisely controls water system by using a sensor micro controller system.  It estimates and measure diminution of existing plant moisture to operate an irrigation system.  Intelligent automatic plant irrigation system waters plants regularly using a moisture sensor.  The system uses a hardware component, which is subjected to variation with the environmental conditions.  A valuable tool for conserving water planning and irrigation scheduling of various agricultural crops. IOT in agriculture 6
  • 7. 2. GREEN HOUSE AUTOMATION :- By implementing a smart greenhouse monitoring system, the Internet of Things helps maintain optimal conditions for healthy plant growth, saving you time and effort.  Light: Adjusting artificial lighting to supplement natural light levels.  Air quality : Filters the air .  Ventilation: Helps in automating ventilation systems and adjust them based on environmental conditions.  Temperature: Adjust heating systems to preserve the ideal temperature range.  Humidity: IoT sensors detect changes in humidity and accommodate irrigation systems and misting systems to maintain the perfect environmental conditions. APPLICATIONS OF IoT IN AGRICULTURE IOT in agriculture 7
  • 8. 3. PRECISION AGRICULTURE :- APPLICATIONS OF IoT IN AGRICULTURE  It makes the farming practice more precise by using smart farming applications.  The goal of precision farming is to analyse the data, generated via sensors, to react accordingly.  Use of various technologies like GPS, GIS, sensors, aerial devices, or field mapping to increase production levels, and improve profitability.  Improved Agriculture Monitoring: Monitor fields more effectively by tracking various parameters.  Unified farming data: To store large agricultural data in one place using cloud- based technology.  Better Decision-Making: Timely response to disasters. IOT in agriculture 8
  • 9. 1.Sensor Integration for Real-Time Monitoring: 1. Implement various sensors, such as temperature, humidity, and heart rate monitors, on livestock to collect real-time data. 2. IoT devices can transmit this data wirelessly to a centralized system for instant monitoring. 2.Automated Alerts and Notifications: 1. Set up automated alert systems to notify farmers or caretakers instantly when abnormal conditions or health issues are detected. 2. Alerts can be sent through mobile applications or other communication channels, allowing for timely response to critical situations. 3.Remote Health Management and Decision Support: 1. Develop a centralized dashboard accessible remotely, providing farmers with a comprehensive view of the livestock's health status. 2. Incorporate decision support systems that offer recommendations based on data analysis, helping farmers make informed decisions regarding veterinary care, nutrition, or environmental adjustments. 4. Livestock Monitoring and Health Management :- APPLICATIONS OF IoT IN AGRICULTURE IOT in agriculture 9
  • 10. 1. Sensor Integration and Deployment: - Implement IoT-enabled soil sensors to collect real-time data on key soil parameters such as moisture levels, temperature, pH, and nutrient content. 2. Data Analytics and Decision Support: - Utilize cloud-based platforms for data storage and analytics to process the large volumes of information generated by the soil sensors. - Implement machine learning algorithms to analyse the data and provide insights into soil health, nutrient deficiencies, and optimal conditions for plant growth. 3. Automated Nutrient Delivery Systems: - Integrate IoT technology with precision agriculture tools to automate the delivery of fertilizers and nutrients based on real-time soil data. - Enable remote monitoring and control of nutrient application systems through mobile or web applications, allowing farmers to make informed decisions and adjustments in real time. 5. Soil monitoring and nutrient management :- APPLICATIONS OF IoT IN AGRICULTURE IOT in agriculture 10
  • 11.  Sensor Integration and Data Collection: In IoT-based crop yield optimization, the integration of various sensors plays a crucial role. Sensors such as soil moisture sensors, temperature and humidity sensors, and spectral imaging devices can be deployed across the agricultural field to collect real-time data. These sensors continuously monitor the environmental conditions and crop health, providing a comprehensive dataset.  Predictive Analytics and Machine Learning Algorithms: Leveraging predictive analytics and machine learning algorithms on the collected data enables farmers to make informed decisions. By analyzing historical data, weather patterns, and current sensor readings, predictive models can forecast crop growth, detect potential diseases, and predict optimal harvesting times. This allows for proactive management and optimization of crop yield.  Automation and Control Systems: Integrating IoT with automation and control systems allows for real-time adjustments based on the predictive analytics. Automated irrigation systems, nutrient delivery systems, and pest control mechanisms can be triggered based on the insights gained from the data analysis. This not only optimizes resource usage but also ensures timely interventions, leading to improved crop yield and resource efficiency. 6. Crop yield optimization and predictive analysis :- APPLICATIONS OF IoT IN AGRICULTURE IOT in agriculture 11
  • 12. Benefits of IoT in Agriculture  Intelligent Data Collection :- The devices monitor climatic conditions, soil composition and quality, crop health, and so on. Moreover, the data is stored and processed automatically.  Waste reduction :- IoT devices will help save crops. Farmers use sensors that can detect infections, infestations, or insect damage at an early stage.  Less Energy Consumption :- Optimize the use of resources (water, energy, land area) using the Internet of Things. Sensors will collect information for you in real-time.  Improved Production Control :- The IoT-enabled agriculture solutions will help you achieve your main goal. Your farm will function as right as rain thanks to the high quality of products.  Competitive Advantage :- Stay one step ahead with IoT technologies. Your crop will have a higher quality. You will be able to grow and harvest more products. IOT in agriculture 12
  • 13. Challenges and limitation of iot in agriculture:  Lack of Infrastructure:- Even if the farmers adopt IoT technology they won’t be able to take benefit of this technology due to poor communication infrastructure.  High Cost :- Equipment needed to implement IoT in agriculture is expensive to earn higher profits.  Lack of Security:- Since IoT devices interact with older equipment they have access to the internet connection, there is no guarantee.  lack of information :- users/ farmers doesn’t have enough knowledge to operating the machines. IOT in agriculture 13
  • 14. WORLD WIDE GRAPHICAL ANALYSIS IoT introduced smart agriculture to us. Through IoT the adoption of IOT in agriculture is constantly growing. COVID -19; has had a positive impact on IoT in Agriculture market share. Disruption in supply chain, shorted of qualified workers, has propelled it’s CAGR to 99%. In fact as per cent reports the smart farming market share is set to reach $28.56 billion by 2030. At the same time, the global smart agriculture market size is expected to triple by 2025, reaching $15.3 billion . Case Studies and Success Stories IOT in agriculture 14
  • 15. 24 AGRICULTURE START-UPS RECOMMENDED FOR SUPPORT FROM POOL OF RS 20 CRORE : In a boost to Agri–tech sector experts have recommended addicted fund of rs 20 crore. This initiative, aimed at accelerating promising ideas was announced during the ATMAN (Agri startup demo And funding ) 2023 programme, organised by DST. The program also launched several initiatives, including the grand challenge & competition for internet of things . IOT in agriculture 15
  • 16. Farmers are merging intuition and expertise with data from satellites to capture subtle changes at field level. Planet’s long-standing partner Granular is leveraging high-frequency Planet Scope imagery to help farmers increase yields and manage risk. Discover how Granular is helping farmers make timely interventions with Planet data. Farmer in the field using Granular Insights. Photo credit: Granular HOW GRANULAR DELIVERS FAST, FREQUENT, IN-FIELD INSIGHTS TO FARMERS IN AN AGE OF TECHNOLOGY, IOT in agriculture 16
  • 17. PM MODI INAUGURATES INDIA’S BIGGEST DRONE MAHOTSAV 2022 IN NEW DELHI : On May 27, 2022 , Prime Minister ( PM ) Narendra Modi Inaugurated India’s biggest Drone Festival, Bharat Drone Mahotsav 2022, at pragati Maidan in New Delhi. During the Mahotsav, the PM met with kisan drone pilots, watched open air demonstrations & also interacted with start – ups at the drone exhibition center. He added, “This event is not just for drones, but also for the positivity towards new technology and innovation in India. Notably, the country’s biggest drone festival comes amid the Centre’s push for extensive use of drones in various fields, including agriculture. Earlier this month, Civil Aviation minister Jyotiraditya Scindia had launched a drone experience studio at the state-run think tank NITI Aayog, where he unveiled two policies — Drone Shakti and Kisan Drone. IOT in agriculture 17
  • 18. FUTURE TRENDS  In agriculture, IoT trends include precision farming, sensor technology for crop monitoring, smart irrigation systems, and livestock tracking. These technologies aim to enhance efficiency, reduce resource usage, and optimize overall farm management through data-driven insights. IOT in agriculture 18
  • 19. FUTURESCOPE OF IoT  Precision farming :- In agriculture, Information and Communication Technology is a tool used for smart farming. With the help of IoT-based devices, crop fields are observed. The technology uses sensors to calculate the moisture of soil, humidity, and temperature. Also, it uses an automated irrigation system to make efficient use of water. Precision farming helps farmers monitor their fields and boost productivity.  Agricultural drones :- Drones used for agriculture and farming are one of the best applications of Internet of Things. They are used to enhance agricultural processes. We use agricultural drones for planting crops, irrigating fields, spraying of pesticides, and monitoring the fields. With the help of drones, it becomes easier to evaluate the health of crops. This is all possible with the help of smart IoT-based devices that are used to make agricultural drones. IOT in agriculture 19
  • 20.  Smart greenhouses :- Farmers use greenhouse farming to enhance the productivity of crops. In greenhouse farming, the environmental factors that affect the growth of crops are controlled by manual intervention. However, manually controlling the mechanism for the growth of crops is less productive. The emergence of IoT and technological advancements has led to the creation of IoT-based greenhouses that consist of various devices such as sensors, climate controllers, etc. IOT in agriculture 20
  • 21. CONCLUSION  In conclusion, IoT in agriculture offers significant potential for increased efficiency, productivity, and sustainability. By integrating smart devices, sensors, and data analytics, farmers can make informed decisions, optimize resource usage, and enhance crop yields. However, challenges such as cost, data security, and infrastructure need to be addressed for widespread adoption. Overall, the continued development and implementation of IoT technologies hold promise for transforming and modernizing the agricultural sector. IOT in agriculture 21