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Niral

The AGRIBOT project proposal aims to develop an advanced agricultural robot to assist small-scale farmers with tasks such as soil testing, pest detection, crop management, irrigation, and harvesting, while providing information on government aid and subsidies. The robot will feature multilingual support and animated interfaces to enhance accessibility and usability for diverse farmers. The project is expected to improve productivity, income, and food security through sustainable agricultural practices and automation.

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0% found this document useful (0 votes)
30 views5 pages

Niral

The AGRIBOT project proposal aims to develop an advanced agricultural robot to assist small-scale farmers with tasks such as soil testing, pest detection, crop management, irrigation, and harvesting, while providing information on government aid and subsidies. The robot will feature multilingual support and animated interfaces to enhance accessibility and usability for diverse farmers. The project is expected to improve productivity, income, and food security through sustainable agricultural practices and automation.

Uploaded by

pragathish003m
Copyright
© © All Rights Reserved
We take content rights seriously. If you suspect this is your content, claim it here.
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TNSDC 3 Naan Mudhalvan

Niral Thiruvizha 2.0


(Hackathon)

AGRIBOT PROJECT PROPOSAL

1. Theme - Agriculture / Food tech

2. Problem statement - How can we create an advanced agricultural bot with multi-language
support and animation that helps small-scale farmers with soil testing,pest detection, crop
management,irrigation and harvesting,while providing information on local government
financial aids,farming schemes, and subsidies, to improve productivity, income, and food
security, and double agricultural output?

3. College Code & College Name - 9177 & Thiagarajar college of engineering

4. Guide Name, Designation, Mobile No. & Email id - Julius Fusic .S ,Assistant professor,
9600663383 , sjf@tce.edu

5. Student Team details:

Sl.No. Student Reg. Name of the Branch Mobile No. email id

No. Student

1 64557/ Sanjay .B Mechatronics 9524960577 bsanjay@stud


917721F043 ent.tce.edu
2 64556/ Pragatheswaran M Mechatronics 7695971848 pragatheswara
917721F032 n@student.tce.
edu

6. Project Summary:

ï Designed to support small-time farmers with a wide range of farming activities, from
soil testing to harvesting.

ï Multilingual and Animated Interfaces: This tool provides multilingual support with
animated interfaces, which will make it easy for farmers from diverse backgrounds
and literacy levels to use.

ï Key Functions:

Soil Testing: Accurate soil quality analysis for better crop management.

Pest Detection: Identifies pests early for timely action.

Crop Management: It tracks crop health for optimal growth.

Irrigation Control: Automatically adjusts irrigation levels for water efficiency.

Automated Harvesting: Reduces labor costs and ensures timely harvests.


TNSDC 3 Naan Mudhalvan
Niral Thiruvizha 2.0
(Hackathon)

ï Access to Government Aid & Schemes: Keeps farmers abreast of local financial aid,
farming programs, and subsidies for informed decisions.

ï Actionable Insights: Analyzes data such as soil nutrients, pest infestations, and
weather conditions, and presents it in an easy-to-understand format with animations
and regional languages.

ï Boosts Productivity & Income: Increases farm productivity, income, and food security
through smart agricultural practices.

ï Sustainable Agricultural Practices: Focus on automation and precision agriculture to


double current agricultural output and more sustainable smallholder farm economies.

7. Proposed solution with methodology

The project aims to create an advanced agricultural robot specifically designed for small
scale farming. The robot will integrate multi language support and animations for
accessibility while automating critical tasks like soil testing, pest detection, crop
management, irrigation, and harvesting. Additionally, it will provide farmers with real-time
updates on local government financial aids, farming schemes, and subsidies. By focusing
on spinach a nutrient-rich crop with significant market demand.The robot enhances
productivity, income, and food security while minimizing wastage.

8. Work Plan / time schedule indicating the project mile stone

Months Description

1st Month Identify specific spinach farming needs.


2nd Month Assemble the robot with precision tools and develop language animation settings.
3rd Month Conduct tests to validate soil testing, pest detection, and harvesting functions in the farm.
TNSDC 3 Naan Mudhalvan
Niral Thiruvizha 2.0
(Hackathon)

9. Plan of action of implementation

Months Description

1st Month Conduct surveys and collect the data in the fields
2nd Month Fabricate the robot and integrates with IOT system for real time monitoring
3rd Month Perform the operations in small-scale and get feedback for making it more farmer-friendly.
4th Month Deploy the robot in full field for testing and refinement.

10. List of facilities available in the college to develop the prototype of the project.

a) Automation Lab: Equipped with tools for sensors, and actuators.


b) IOT Lab: For developing and testing IoT-enabled monitoring systems.
c) Software Development Lab: For building multi-language and animated interfaces.

11. Total Cost - ¹95,000 (includes hardware, software, testing, and deployment).

12. Details of Financial assistance required (Limited to Rs 10,000/-)

Components Usage Price ( in ¹)

Sensors pH, moisture, and imaging sensors for farming . 3000


Microcontroller ESP32 and 8051 for IoT integration. 3000
3D printing Precision harvesting tools for spinach. 1500
IOT Modules Communication and monitoring systems. 2000
500
Miscellaneous Structural components and connectors.

Total Financial Assistance Required: ¹10,000.

13. Expected outcomes / results

ï Multi-Language and Animation Interfaces: The robot has interfaces in several


languages with animations, making the robot friendly to all farmers.

ï Soil Testing: Advanced sensors check the soil's quality and give real-time information
to help the farmer manage the crops better.

ï Pest Detection & Crop Monitoring: Smart sensors detect pests and track crops to
catch issues early and improve crop health.

ï Irrigation Control: Automatically adjusts watering to save water and keep crops
properly hydrated.

ï Automated Harvesting: Saves on labor and guarantees timely harvesting.


TNSDC 3 Naan Mudhalvan
Niral Thiruvizha 2.0
(Hackathon)

ï Real-Time Farming Info: The government's information on subsidies, programs, and


best practices reaches farmers to help them make smart decisions.

ï More Productivity, Less Waste: Increase crop yields with minimal waste for greater
income and improved sustainability in farming.

ï Sustainable and Scalable: Suitable for long-term use, improves efficiency for all sizes
of farmers.

ï Supports Food Security: Increases food production, therefore strengthening food


security and supporting the farming communities.

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UNDERTAKING

1. ALL the studentsare studying in final year engineering.All the studentsare registered
only once for this scheme.
2. The college will provide the basic infrastructureand other required facilities to the
students for timely completionof their projects.
3. The college assumes to undertake the financial and other management
responsibilitiesof the project. We are aware that the amount is to be utilized only for
the purpOse sanctioned i.e. to meet the expenses for developing the prototype and
not for purchase of computer consumables,stationaries,honorarium, overhead etc.
Unutilised balance amount will be returned back to the University after the time of
completionof the project.

Name and Sigr of


MEayathuan
Name and Sign of
Student 1 Student 2
B SANA Y M PRA GATHESWA RAN
(MECHAt RONICS) (MECH ATRONIS)

Signatureof the Mentor Signatureand seal of the principal


Dy. S. Jyuvs Fusic Dr.L.ASHOK KUMAR
PRINCIPAL
ÄPMCT , TcE
THIAGARAJARCOLLEGE OF ENGINEERING
MADURAI625 015.

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