The project shifts the basic mobile phone functions to a wearable computer, which blends both virtual and real world in front of human eye. The wearable computer is mounted on a glasses frame and can be easily worn by the user. The user will see a transparent display in front of his eyes and will se
Vision
The project shifts the basic mobile phone functions to a wearable computer, which blends both virtual and real world in front of human eye. The wearable computer is mounted on a glasses frame and can be easily worn by the user. The user will see a transparent display in front of his eyes and will see the basic phone display in his vision. The following will be displayed in front of the eye
User will be able to view the text messages and answer the incoming calls in the mobile phone. The mobile phone will be connected to the wearable computer wirelessly. The wearable will also have additional features to provide accessibility which include Optical Character Recognition (OCR); which will scan data from any document or book page using camera and convert it into editable document saved over the cloud; and photo capture using the camera.
User will be able to control the glasses via hand gestures in front of the camera.
The virtual world is growing fast but it also distances us from our real world. At times we get engrossed so much in out virtual worl that we forget what is happening in our real lived. The objective of this project is to provide a hands free solution which will seamlessly blend virtual world with human vision to provide an augmented reality experience. The solution will provide a hands free mobile phone experience right in front of the eyes to give the user both world right in front of their eyes.
An ARM based processor will be used as the brain of the project. It will connect to the camera, microphone, earphone, battery and display directly and will have a wireless connection to the mobile phone application to transfer all the data between the two. The camera will be used to capture all the photos and also the OCR data to be converted to editable documents and recognizing hand gestures. The earphone and microphone will assist in making a call and a special near eye display will be used for Augmented reality experience.
As soon as the glasses will connect to the mobile phone using the application for the glasses, the notifications recieved will be pushed in user's vision. All incoming calls will be transfered to the wearable from the phone and user can answer them using that. The special hand gestures will trigger the OCR and the camera will start to capture frames on user's command and extract all the text from those. All the extracted data will be sent to the mobile phone as an editable text document. Similarly, captured photos will also be sent to the mobile phone wirelessly.
The project provides the important phone features right in front of the eyes and mutitasking becomes easy which improves the efficiency of individuals. It can be used by students to benefit from the optical character recignition feature or a normal person having business over phone to connect to both virtual and real world simultaneaously.
Final deliverables include a wearable computer mounted on a normal perscription glasses frame which will have all the above mentioned features, a mobile application which will connect to the mobile phone wirelessly and provide all the data transfer between the two under one platform and a research paper which will include all the research done and the knowledge acquired during the development of the project
| Item Name | Type | No. of Units | Per Unit Cost (in Rs) | Total (in Rs) |
|---|---|---|---|---|
| ARM processor (raspberry pi 4) | Equipment | 1 | 15500 | 15500 |
| Bone conduction earphones | Equipment | 1 | 1500 | 1500 |
| Raspberry pi compatible camera module | Equipment | 2 | 2800 | 5600 |
| Near eye display | Equipment | 1 | 3000 | 3000 |
| 3D printed wearable frame | Miscellaneous | 1 | 500 | 500 |
| Battery | Equipment | 1 | 2000 | 2000 |
| Total in (Rs) | 28100 |
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