The presented project involves the design and fabrication of unmanned underwater vessel (UUV). The UUV is a watercraft which has the ability to operate beneath water surface independently. These vessels are mainly cylindrical in shape with hemispherical or conical ends. The design of
Design and Fabrication of unmanned underwater vessel
The presented project involves the design and fabrication of unmanned underwater vessel (UUV). The UUV is a watercraft which has the ability to operate beneath water surface independently. These vessels are mainly cylindrical in shape with hemispherical or conical ends. The design of project is carried out in CAD software (Creo 5.0) and the fabrication is done by using 3D printer. The project describes a design concept and prototype implementation of UUV. The proposed UUV have ability to move under water. The UUV model consists of four rudders which are connected using three servomotors. Two servomotors are used for up and down movements, while one servomotor is used for left and right movements. The one brushless DC motor is also used which is connected with the fan to produce the thrust. The whole design of UUV is being controlled by using STM32F103C8T6 Microcontroller. The stabilization of the UUV is achieved by using IMU sensor along with the water suction and removal mechanism through water pumps. Furthermore, the metal detection sensor K1208065 is interfaced with the microcontroller for the detection of metals.
The main objectives of the project are listed as follows:
The implementation methodology of this project includes the calculations of thrust required to move the UUV on the surface and under water. The project involves the stabilization and control of UUV using STM32F103C8T6 Microcontroller and IMU sensor (MPU 6050). The proposed UUV will suck water to dip into the water through suction pump mechanism. Three servomotors are connected with four rudders to move the UUV from 0 degree to 180 degrees. Moreover, the brushless dc motor is controlled by STM32F103C8T6 Microcontroller using PWM to produce thrust in the opposite direction.
Following are the major applications and benefits of our project:
1. STM32F103C8T6 Microcontroller
Following are the technical specifications of STM32F103C8T6 Microcontroller:
2.Servo Motor
Technical specifications of servo motor (MG996R) :
3.Brushless dc motor (BLDC)
Technical specifications of BLDC (A2212):
4. IMU Sensor
Technical specifications of IMU sensor (MPU6050):
5. Electronic speed controller (ESC)
Technical specifications of ESC (40A):
6. Lipo battery
Technical specification of lipo battery:
7. Metal Detector
Technical specification of metal detector (K1208065):
8. Wireless Serial Port Module
Technical specifications of wireless serial port module (HC-12):
| Item Name | Type | No. of Units | Per Unit Cost (in Rs) | Total (in Rs) |
|---|---|---|---|---|
| STM32F103C8T6 (Microcontroller) | Equipment | 2 | 400 | 800 |
| Servo Motor (MG996R) | Equipment | 4 | 650 | 2600 |
| Brushless DC Motor (A2212) | Equipment | 1 | 4500 | 4500 |
| Electronic Speed Controller (40A) | Equipment | 1 | 2500 | 2500 |
| Water Pumps | Equipment | 2 | 250 | 500 |
| IMU Sensor (MPU 6050) | Equipment | 2 | 300 | 600 |
| Metal Detector Sensor (K1208065)) | Equipment | 1 | 300 | 300 |
| Lipo Battery | Equipment | 1 | 4000 | 4000 |
| 3D printing | Equipment | 1 | 26000 | 26000 |
| Wireless serial port module (HC-12) | Equipment | 2 | 800 | 1600 |
| others | Miscellaneous | 1 | 6000 | 6000 |
| Total in (Rs) | 49400 |
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