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Robotics
  Where Ail meets the real world.
What is a Robot ?
   “A re-programmable, multifunctional
    manipulator designed to move
    material, parts, tools, or specialized
    devices through various programmed
    motions for the performance of a
    variety of tasks.”
A robot must have the following essential
characteristics:
                Mobility: It possesses some form of mobility.
                Programmability: implying computational or
                 symbol- manipulative capabilities that a designer
                 can combine as desired (a robot is a computer).
                 It can be programmed to accomplish a large
                 variety of tasks. After being programmed, it
                 operates automatically.
                Sensors: on or around the device that are able
                 to sense the environment and give useful
                 feedback to the device
                Mechanical capability: enabling it to act on its
                 environment rather than merely function as a
                 data processing or computational device (a robot
                 is a machine); and
                Flexibility: it can operate using a range of
                 programs and manipulates and transport
                 materials in a variety of ways.
Isaac Asimov's Three Laws of Robotics
       Law Zero A robot may not injure humanity, or,
        through inaction, allow humanity to come to
        harm.
       First Law A robot may not injure a human
        being, or, through inaction, allow a human being
        to come to harm.
       Second Law A robot must obey orders given it
        by human beings, except where such orders
        would conflict with the First Law.
       Third Law A robot must protect its own
        existence as long as such protection does not
        conflict with the First or Second Law.
Construction & Working of the Robot
       Mechanical platforms- the hardware base
       Sensors
       Motors
       Driving mechanisms
       Power supplies
       Electronic Controls
       Microcontroller systems
       Languages
       R/C Servos
       Pneumatics
       Driving High-Current Loads from Logic
       Controllers
Sensors
          Sensors are the parts that act like senses and can detect
          objects or things like heat and light and convert the
          object information into symbols or in analog or digital
          form so that computers understand. And then Robots
          react according to information provided by the sensory
          system



             Vision Sensor
             Proximity Sensors
             Proprioceptive Sensors
             Logical Sensors
Vision Sensor

   Camera
   Frame grabber
   Image processing
    unit
Other devices


                Motors
          Driving mechanisms
             Power supplies
 Driving High-Current Loads from Logic
Microcontroller systems

   Speed    Languages
   Size
   Memory   •RoboML
             (Robotic Markup Language)
             •ROSSUM
             •XRCL
             (Extensible Robot Control Language)
A robot system architecture
Artificial Intelligence

   What is artificial intelligence?

    It is the science and engineering of making
    intelligent machines, especially intelligent
    computer programs



   Can a machine think?
Future
                Artificial neural networks
                Robots which train themselves




         Nothing can be predicted about future.
Summary


     Robots are very inteligent
Acknowledgement


                       Thanks to all of my
                     respected teachers for
                  allowing me to represent an
                  article on Robotics. I thank
                    to the Internet Faculty of
                    our college for providing
                      access to Internet for
                   searching data. Thanks to
                  my parents for providing me
                     a ‘Personal Computer’.

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Robotics

  • 1. Robotics Where Ail meets the real world.
  • 2. What is a Robot ?  “A re-programmable, multifunctional manipulator designed to move material, parts, tools, or specialized devices through various programmed motions for the performance of a variety of tasks.”
  • 3.
  • 4. A robot must have the following essential characteristics:  Mobility: It possesses some form of mobility.  Programmability: implying computational or symbol- manipulative capabilities that a designer can combine as desired (a robot is a computer). It can be programmed to accomplish a large variety of tasks. After being programmed, it operates automatically.  Sensors: on or around the device that are able to sense the environment and give useful feedback to the device  Mechanical capability: enabling it to act on its environment rather than merely function as a data processing or computational device (a robot is a machine); and  Flexibility: it can operate using a range of programs and manipulates and transport materials in a variety of ways.
  • 5. Isaac Asimov's Three Laws of Robotics  Law Zero A robot may not injure humanity, or, through inaction, allow humanity to come to harm.  First Law A robot may not injure a human being, or, through inaction, allow a human being to come to harm.  Second Law A robot must obey orders given it by human beings, except where such orders would conflict with the First Law.  Third Law A robot must protect its own existence as long as such protection does not conflict with the First or Second Law.
  • 6. Construction & Working of the Robot Mechanical platforms- the hardware base Sensors Motors Driving mechanisms Power supplies Electronic Controls Microcontroller systems Languages R/C Servos Pneumatics Driving High-Current Loads from Logic Controllers
  • 7. Sensors Sensors are the parts that act like senses and can detect objects or things like heat and light and convert the object information into symbols or in analog or digital form so that computers understand. And then Robots react according to information provided by the sensory system Vision Sensor Proximity Sensors Proprioceptive Sensors Logical Sensors
  • 8.
  • 9. Vision Sensor  Camera  Frame grabber  Image processing unit
  • 10. Other devices Motors Driving mechanisms Power supplies Driving High-Current Loads from Logic
  • 11. Microcontroller systems  Speed Languages  Size  Memory •RoboML (Robotic Markup Language) •ROSSUM •XRCL (Extensible Robot Control Language)
  • 12. A robot system architecture
  • 13. Artificial Intelligence  What is artificial intelligence? It is the science and engineering of making intelligent machines, especially intelligent computer programs  Can a machine think?
  • 14.
  • 15. Future  Artificial neural networks  Robots which train themselves Nothing can be predicted about future.
  • 16. Summary Robots are very inteligent
  • 17. Acknowledgement Thanks to all of my respected teachers for allowing me to represent an article on Robotics. I thank to the Internet Faculty of our college for providing access to Internet for searching data. Thanks to my parents for providing me a ‘Personal Computer’.

Notes de l'éditeur

  1. Why do we believe only - We can construct a "Thinking Machine?" - What a computer can and cannot do?