Sixth Sense Technology

Sixth Sense Technology

Six Sense is a robotics workshop which would deal with six sense technologies. It deals with controlling the robot through gestures and making different applications work without switches or buttons. Motive of the workshop is to make students familiar with sixth sense technologies and feel the augmented realism.

Workshop Plan Day wise

  • Introduction to Robotics.
  • Introduction to sixth sense technology.
  • Introduction to MATLAB
  • Significance of MATLAB windows (Editor, workspace, Command History and Command Window)
  • Basics of MATLAB Programming
  • Use of primary commands in MATLAB
  • Formation of a Color Pixel from a Matrix
  • Introduction to Image Processing Introduction to images, pixels and frames
  • Types of images and their conversion
  • Practical: Acquisition and displaying different format images.
  • Introduction to Live Digital Image Processing
  • A study of the Properties of a Camera
  • Camera Resolution
  • Camera Formats
  • Practical: Getting a continuous video streaming from the camera.
  • Practical: Capturing Frames from the live streaming.
  • Practical: Converting type of Captured frames into other types.
  • Practical: Calculating a number of Black and White Pixels in the Captured frame.
  • Introduction to MATLAB Web browser and its features.
  • Project: Gesture control Web Browsing.
  • Introduction to mp3 player and its properties
  • Project: Gesture control mp3 player.
  • Introduction to microcontrollers.
  • Wide description about Atmega8
  • Memory organization in microcontrollers.
  • Input & Output peripherals in Microcontrollers.
  • Resisters in Microcontrollers.
  • Programming of Microcontrollers.
  • Kits distribution.
  • Hardware description
  • Basic practical exposure with interfacing peripherals
  • Interfacing of LEDs with the microcontroller.
  • Writing first program in Embedded C and dump on the chip.
  • Practical: Different pattern of LED blinking.

Integrated Chips & Actuators

  •  Wide description about Motors.
  •  Motor driver IC L293D.
  •  Interfacing Motors with microcontrollers.
Project: Development of Autonomous Robot.
  • Differential drive mechanism of Robot.

Serial communication UART in microcontrollers.

  •  Accessing internal UART.
  •  Transferring data serially from PC to microcontroller.
Project: PC control robot.

Interfacing image processing (MATLAB) with microcontroller.

  •  Blinking pattern of LEDs by various color gestures.
Project: Six Sense control Robot.
Day 1 | Session 1 & 2
  • Introduction to Robotics.
  • Introduction to sixth sense technology.
  • Introduction to MATLAB
  • Significance of MATLAB windows (Editor, workspace, Command History and Command Window)
  • Basics of MATLAB Programming
  • Use of primary commands in MATLAB
  • Formation of a Color Pixel from a Matrix
  • Introduction to Image Processing Introduction to images, pixels and frames
  • Types of images and their conversion
  • Practical: Acquisition and displaying different format images.
  • Introduction to Live Digital Image Processing
  • A study of the Properties of a Camera
  • Camera Resolution
  • Camera Formats
  • Practical: Getting a continuous video streaming from the camera.
  • Practical: Capturing Frames from the live streaming.
  • Practical: Converting type of Captured frames into other types.
  • Practical: Calculating a number of Black and White Pixels in the Captured frame.
  • Introduction to MATLAB Web browser and its features.
  • Project: Gesture control Web Browsing.
  • Introduction to mp3 player and its properties
  • Project: Gesture control mp3 player.
Day 2 | Session 1 & 2
  • Introduction to microcontrollers.
  • Wide description about Atmega8
  • Memory organization in microcontrollers.
  • Input & Output peripherals in Microcontrollers.
  • Resisters in Microcontrollers.
  • Programming of Microcontrollers.
  • Kits distribution.
  • Hardware description
  • Basic practical exposure with interfacing peripherals
  • Interfacing of LEDs with the microcontroller.
  • Writing first program in Embedded C and dump on the chip.
  • Practical: Different pattern of LED blinking.

Integrated Chips & Actuators

  •  Wide description about Motors.
  •  Motor driver IC L293D.
  •  Interfacing Motors with microcontrollers.
Project: Development of Autonomous Robot.
  • Differential drive mechanism of Robot.

Serial communication UART in microcontrollers.

  •  Accessing internal UART.
  •  Transferring data serially from PC to microcontroller.
Project: PC control robot.

Interfacing image processing (MATLAB) with microcontroller.

  •  Blinking pattern of LEDs by various color gestures.
Project: Six Sense control Robot.

Project Details

Development of Autonomous Robot.

  •  Developments of PC control Robot.
  •  Anti-theft System Prototype.
  •  Wearable color gesture operated web browsing.
  •  Color gesture controlled musicplayer.
  •  Gesture Control PC application.
  •  Sixth Sense Controlled Robot.
  • ATmega8 Development Board.
  • D-type cable.
  • On board voltage regulated Power supply unit.
  • USB to serial converter.
  • Universal Robotics Platform.
  • DC Motors pair.
  • Wheels.
  • Screws & Screw driver.
  • Adaptor.
  • Supporting cables.
  • A seminar hall/Class room with seating capacity of 100 students.
  • One projector.
  • 2 Collar mike with sound system.
  • White board and marker.
  • Workshop coordinators(3-5).
  • Laptop charging points.
  • One laptop/PC to each group.
  • Acquaint yourself with practical knowledge.
  • Workshop taken by Exceptionally Qualified and Professional Trainers actively involved in Research & Development.
  • Learn your Area of Interest directly from Industry Experts.
  • Scales up your CV/ Resume in Technical while boosting your Logical Abilities.
  • Brings Confidence in you for Technical rounds of Interview.
  • Lifetime assistance on any of your projects.
  • Certificate of Participation
  • Certificate of Coordination
  • Certificate of Appreciation to College
  • Relevant Software.
  • Study Material (Soft Copy) FREE.
  • A TechieNest notepad

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