Objective: The aim of the project is to develop a human machine interface used for control robot arm. Our objective is to make this device simple as well as cheap so it can be produced and used for number of purposes. The objective of this project is to build a car that can be con
Gesture Controlled Robotic Arm
Objective:
The aim of the project is to develop a human machine interface used for control robot arm. Our objective is to make this device simple as well as cheap so it can be produced and used for number of purposes. The objective of this project is to build a car that can be controlled by gesture wirelessly. In this project user is also able to control motions of the car by wearing controller glove and performing predefined gestures. This can be also used in many potential applications such as wireless controller car racing etc.
Scope
Phase-I
Project Initiation Phase:
1. Project Proposal
2. Gantt Chart & Project Charter
3. Brief Analysis of FYP outcomes
4. Software/Hardware Requirements
5. Video and Pictures – Tentative
6. General features of Projects – (Flow Diagram)
Phase–II
1. Project Execution & Control Phase
2. Use Cases
3. Process Flow Diagram
4. Class Diagrams
5. Complete
6. Complete normalized ER diagram
7. DFD, Queries w.r.t output and results found
8. Main functional classes
Phase-III
Mid-Year Project Presentation (Project Code Completion):
Phase-1V
Testing & Evaluation Phase
Phase-V
Project Closing
Project Display and Final Evaluation
The actuators are used in this project are not well enough to lift heavy parts it can be replaced by dynamixel actuators so then it will work more efficiently, the gripper can also be replaced by universal gripper so then it will be capable to do multiple tasks, the mechanical design can be improved by work on its dynamics so that it will become more efficient as well as reliable to work in hazardous environment. Moreover, the research is going on to use brain signal Electroencephalogram (EEG) to control the robotic arm so that it will be beneficial for handicapped people. PID controller or many different schemes can be applied to make the manipulator efficient for increasing the range wireless communication channel HC-12 can be used in place of HC-05 because it has more than 1 km range. Moreover, we can convert into an internet of things, then we will able to use it from anywhere. The research is also going on to make it intelligent enough to make decisions about the task it performs.
1. MPU-6050 Accelerometer + Gyro (sensor)
The sensor MPU-6050 consists of gyro and an accelerometer which provides high accuracy because of the hardware of 16-bits analog to digital conversion for every channel due to this it can capture x, y and z within exact time.The sensor uses the I2C-bus to interface with the Arduino.
2. Robotic Glove
It consist of flex sensor, MPU-6050 & wireless transmitter which transfer the data of accelerometer & gyroscope where the values are combined and processed simultaneously, at the same time the flex sensor is doing its job by sending the degree of movement of the finger to controller.
3. Bluetooth module (Master/Slave)
HC-05 and HC -06 are the Bluetooth modules. HC-06 is only a slave module but HC-05 can operate as either a master device or a slave device. It is a slave by default, but it can be re- configured as a master device via AT commands (Module initialized as Data mode by default). To enter into the AT command mode we need to press the push button on the module.
5. Servo Motor
Servo motor can be differentiate from DC/AC or stepper motors that they remain static on a place is used to grip any object, whereas AC/DC motors are rotatory. The usage of servo motors is where no rotation is required so they just hold an object and transfer from one place to another.
6. ARDUINO HARDWARE
Arduino is an open source hardware and software it is a platform which is helping electronic field by providing enough microcontroller and its kits with the purpose of building such devices that can control and sense objects.
Arduino board designs uses a variety of controllers and processors.
7. H Bridge
The L298N is an H Bridge integrated circuit having a 15- lead Multiwatt and Power packages. It is a high current, high voltage dual full-bridge driver designed to accept standard TTL logic level sand drive inductive loads such as stepping motors, solenoids, DC and relays.
8. DC Gear Motor
We are using Dc motor which a high power, 12v brushed dc motor having a 46:85:1 gearbox. The gear motor is cylindrical, with a diameter just under the 25 mm, and the D shaped.
9. Flex Sensor
For measuring the level of bend or angular deflection a sensor named flex sensor is used. There is variable surface in a flex sensor called resistive which varies with the bending of sensor accordingly
10. Ultrasonic Sensor
Ultrasonic sensor is mainly used for microprocessors and microcontrollers such as AVR, PIC, Raspberry Pi, etc. The following guide is universal because it must be followed regardless of the type of computer equipment used. Regulated 5v is supplied to the sensors; power through the sensors’ VCC and ground pins.
| Item Name | Type | No. of Units | Per Unit Cost (in Rs) | Total (in Rs) |
|---|---|---|---|---|
| Mg996R 6 Servo | Equipment | 6 | 1050 | 6300 |
| Flex Sensor di robot 6 inch | Equipment | 1 | 6300 | 6300 |
| Robotic Arm Aluminum Body Mpo6050 | Equipment | 1 | 13000 | 13000 |
| Lithium Batteries | Equipment | 4 | 500 | 2000 |
| Arduino Nano | Equipment | 1 | 700 | 700 |
| Pcb Robotic Glove | Equipment | 1 | 700 | 700 |
| Robotic Gloves | Equipment | 1 | 800 | 800 |
| 6v 4 amp Battery | Equipment | 1 | 870 | 870 |
| 3.7v 2 amp cell | Equipment | 6 | 140 | 840 |
| Robotic Car acrylic model 3mm | Equipment | 1 | 4500 | 4500 |
| L298 driver with gears mothers | Equipment | 1 | 1200 | 1200 |
| Ultrasonic Sensor | Equipment | 1 | 300 | 300 |
| Hc05 and hc06 | Equipment | 2 | 700 | 1400 |
| Wheels and Tyer | Equipment | 4 | 375 | 1500 |
| arduin 650 | Equipment | 3 | 800 | 2400 |
| Thesis Report 1 | Miscellaneous | 1 | 500 | 500 |
| Thesis Report 2 | Miscellaneous | 2 | 600 | 1200 |
| Final Thesis Report | Miscellaneous | 1 | 1700 | 1700 |
| Total in (Rs) | 46210 |
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