Agriculture in Pakistan is the main source of food and exports, whereas, it lacks the use of Smart Farming and right cultivation techniques. This is important to overcome the related problems, like pests and disease control, land preparation, effective irrigation, fertilizer utilization and observat
Pak Agri-IoT (Pakistan Agriculture-Internet of Things) Smart Farming Based Decision Support System for Optimum Crops Yield
Agriculture in Pakistan is the main source of food and exports, whereas, it lacks the use of Smart Farming and right cultivation techniques. This is important to overcome the related problems, like pests and disease control, land preparation, effective irrigation, fertilizer utilization and observation of crop condition. Proposed project aims to overcome the said problems by providing the remote sensing unit integrated with cloud and android application for enablement of precision agriculture thus improving productivity and increase in yields and profitability. Currently the information about the progress of crops is collected manually and there is no centralized national database. Centralized national database where the progress of crops can be collected from the deployed sensors in real-time followed by solid policy decisions is a necessary requirement. Therefore, there exist a need of Solar Powered Real-time Monitoring system in smart decision making utilized for optimal yield. Therefore, this project aims to develop Agri-IoT (Agriculture-Internet of Things) using remote units and android application to collect real-time data for processing, and analysis to improve the overall farming operations and management.
Hardware Requirements:
Temperature and humidity sensor:
This sensor is basically a cost efficient digital humidity & temperature sensor. This sensor supplies digital output and therefore can be directly connected to data pins of microcontroller in spite of using ADC.
Water Level Sensor:
Water level sensor, otherwise called drift balls, are round, tube shaped, have a place or correspondingly melded items, produced using either unbending or adaptable material, that are light in water and different fluids.
Ph Sensor:
The availability of nutrients is as essential to plant growth as it is to animals and livings organisms. In optimizing a plant's growth potential and yielding highly productive harvests
GPS sensors:
Typically associated with the automotive and cellular communication industries, GPS sensors are also advantageous to smart agriculture.
Cameras:
The application of (smart) cameras for process control, mapping, and advanced imaging in agriculture has become an element of precision farming that facilitates the conservation of fertilizer, pesticides, and machine time
Software Requirements:
Cloud and data base layer:
Data from multiple sensors will be collected and database according to the types of crop and geographical location will be developed. This data base will be updated in realtime.
Android/IOS Layer:
An Android App Will be created with English and Urdu Versions. (App will have login restrictions such as Master-Slave method). After the data collection, the overall data will be gathered in cloud and transferred to the mobile app through cloud.
This project has diverse scope as it introduces the modern technology in the area of agriculture. Advancement in the agriculture sector will directly raise the economy of Pakistan which will put Pakistan on the road of stability.
The main objectives of this project are as follow
The project implementation will be divided into following modules as shown in Table
| No. | Project Modules | Description of Implementation Layers |
| 1 | Field Instrumentation Layer |
LDR sensor, Tilt sensor, Piezo sensor, Solar panel Backup battery, GPS module
|
| 2 | Cloud and Data base layer | • Data from multiple sensors will be collected and database according to the types of crop and geographical location will be developed. This data base will be updated in realtime |
| 3 | Android/IOS Layer |
|
No.
1
2
3
The IOT based Monitoring framework will be based on an integrated Android based decision Support System comprising of integrated Sensors, Networking, Cloud and Decision Support layers to provide suggestions and alarms needed for optimal yield.
The deliverable of this project will provide the condition of the crop detected from the circuit of various sensors in a mobile application. The humidity sensors and temperature sensors check the physical condition of crop and write in the app with the location of that fields. For location tracing we have implemented the GPS sensor in our hardware. When the app get notified by the present conditions, the conditions will then compared by the optimum conditions of that crop and hence show the results whether it have to harvest, need more water or fertilizer etc. The IOT based Monitoring framework will be based on an integrated Android based decision Support System comprising of integrated Sensors, Networking, Cloud and Decision Support layers to provide suggestions and alarms needed for optimal yield.
| Elapsed time in (days or weeks or month or quarter) since start of the project | Milestone | Deliverable |
|---|---|---|
| Month 1 | Research and Survey for System Requirements | Literature Review and Product Feasibility report |
| Month 2 | Planning of hardware | prototype model |
| Month 3 | Pole Creation | Installation of hardware and gathering information |
| Month 4 | Development of online database system | Transferring data and integration of data with online system |
| Month 5 | Decision Support System | Designing android app |
| Month 6 | Integration of hardware and software | Final Integrated System |
| Month 7 | Testing and improvisation | Working model |
| Month 8 | Documentation | Final Report |
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