This project describes the development of an autonomous weeding Rover for the agricultural industry. The main aim was to develop this project is to design a vehicle that could later be used to develop a commercial product. The current trend in the agricultural industry is that the larger machines ca
Autonomous Weeding Rover
This project describes the development of an autonomous weeding Rover for the agricultural industry. The main aim was to develop this project is to design a vehicle that could later be used to develop a commercial product. The current trend in the agricultural industry is that the larger machines can Privilege from economies of scale. These heavy machines are causing three major problems for farmers; serious subsoil compaction, longer disruptions due to single-vehicle failure, and an inability to efficiently deal with weeds which have resulted in a rapid increase of herbicide-resistant weeds. This project is an attempt at solving these problems by integrating the Farm Bot of incorporated code with a lightweight, cost-efficient, aesthetically pleasing, and durable frame on wheels that can operate autonomously on farms and is being powered by solar energy. The project started by researching the agricultural industry and benchmarking similar products, which gave an understanding of the problem and how it could best be solved. It was decided that the complex problem was to be divided into several secondary problems which were then solved parallel with each other. The different concepts were evaluated using CAD. By getting up projections, conclude that it weighs around 100 kg, the parts costs around USD 600-700 and it is equipped to be able to operate autonomously for at least a day at a time. It is very easy to assemble and has a modular design, which simplifies further development.
Methods:
Although the rover consists of several different parts, But a problem decomposition done where a complex problem is divided into simpler subproblems and can therefore be tackled in a more focused way.
The Basic four-step concept generation methods used in the implementation of this project.
1. Clarify the problem.
2. Search externally.
3. Search internally.
4. Explore systematically.
Approaches:
Although we have several approachs to find an optimal solution, But the key approach we are using in this project includes different processes.
By using these methods and approaches we would accomplish our final and reliable product.
Benefits:
There are numerous benefits, But the key benefits that Farmers would grab by using this product are Farmers no longer have to apply water, fertilizers, and pesticides uniformly across entire fields. Instead, they can use the minimum quantities required and target very specific areas, or even treat individual plants differently.
Significant Benefits Include:
Technical Requirements
These are some technical requirements found through several discussions with the supervisor and it was understood that he wanted a rover that was:
Specifications:
| Components | Specs |
| Height of Rover | 4 feet Approximately |
| Length and width of Rover | 55 * 55 inches |
| Weight of Rover | 80– 100 kg |
| Solar plates | 2 |
| Farm Bot | 1 |
| Batteries | Two both are 12-20V |
| Motors | 2 Both 12V or 120V comdition dependent |
| Tiers | Large size Bottom 2 tires / Small size front 4 tires |
| Camera | 1 |
| Herbicide tanks | 1 |
| Form Boot | 1 |
| Control&configuration | By smart phone |
Components
Height of Rover
Length and width of Rover
Weight of Rover
Solar plates
Farm Bot
Batteries
Motors
Tiers
Camera
Herbicide tanks
Form Boot
Control&configuration
| Elapsed time in (days or weeks or month or quarter) since start of the project | Milestone | Deliverable |
|---|---|---|
| Month 1 | Compilation of Final Year report based on Project | Adequate Documentation Of Project |
| Month 2 | Based on project requirements, Finalize the methods and approaches through which we can achieve the conclusive product | Implementation of Methods & Approaches |
| Month 3 | Design & Develop the appropriate structure of the rover that can be feasible in any environment. | Design & Development of Structure of Rover |
| Month 4 | Classifying & acquiring of feasible components that be necessary for development of rover . | Acquiring all components & append with the final structure |
| Month 5 | Checking the different process and parts of rover either they will be working properly. | Testing & Checking the different process of rover |
| Month 6 | Analyzing the output of rover by implementing real challenges in front and deliver the final product | Analyzing & Delivering the Final product |
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