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Quantum robotics
Quantum robot
 A kind of brand-new robot.
 Quantum robot is proposed through fusing quantum theory with robot technology
 A complex quantum system
 Quantum theory is more rapidly developing
 Many results of quantum information technology have shown that quantum
computer can effectively increase efficiency for solving some Important classical
problems
 Solve some hard problems that classical computer can’t solve
 Quantum communication can realize high precision secrecy communication .
 Increase capacity of channel.
 We consider the fusion of quantum theory and robot technology
 Use quantum system to construct new type robot quantum robot.
Three fundamental parts
 MQCU.
 Quantum controller/actuator.
 Information acquisition units.
 There are 2 important directions
 Intelligentization.
 Micromation.
Intelligentization
 Improving the performance of sensor
 Increasing the speed of learning
 Behavior decision
Micromation
 It will consequentially bring on the occurrence of quantum effect.
 So many difficulties must be solved from new angles.
Paul Benioff
 Born :-May 1, 1930
 American physicist who helped pioneer
the field of quantum computing
 Died :-March 29, 2022
Paul Anthony Benioff
 The conception of quantum robot.
 Benioff showed that a computer could operate under the laws of quantum
mechanics by describing a Schrödinger equation description of Turing machines.
 1970s and 80s that demonstrated the theoretical possibility of quantum computers
by describing the first quantum mechanical model of a computer.
MQCU
 Information processing center
 Acts as cerebrum
 It receives some tasks described using quantum language.
 Exchanges information with its environment via quantum sensor
 By sorting, analyzing, computing &processing all kinds of information including
task information, environment information and sensing information
 MQCU is made up of many QCUs
 QCU(quantum computing units)
 Each QCU accomplishes some specific tasks .
 Exchange information with each other
 Through quantum bus
Quantum controller and acuator
 It receives and process indications signal
 From MQCU and informs actuator to carry out corresponding actions.
 It acts as connection between the cerebrum and arm of quantum robot.
Information acquisition units
 Quantum robot need also perceive it’s environments and acquire information
 Through information acquisition units.
 In the present robot, quantum sensor perceives the information of it’s
environments and the robot may also receive some other information from distant
mainframe or other quantum robots through external communication unit.
 The information to be acquired includs quantum information and classical
information.
 The quantum robot has communication interface to exchange information with
distant mainframe or other quantum robots, which can constitute a multi quantum
robot system.
quantum robotics.pptx
quantum robotics.pptx

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quantum robotics.pptx

  • 2. Quantum robot  A kind of brand-new robot.  Quantum robot is proposed through fusing quantum theory with robot technology  A complex quantum system
  • 3.  Quantum theory is more rapidly developing  Many results of quantum information technology have shown that quantum computer can effectively increase efficiency for solving some Important classical problems  Solve some hard problems that classical computer can’t solve
  • 4.  Quantum communication can realize high precision secrecy communication .  Increase capacity of channel.  We consider the fusion of quantum theory and robot technology  Use quantum system to construct new type robot quantum robot.
  • 5. Three fundamental parts  MQCU.  Quantum controller/actuator.  Information acquisition units.
  • 6.
  • 7.  There are 2 important directions  Intelligentization.  Micromation.
  • 8. Intelligentization  Improving the performance of sensor  Increasing the speed of learning  Behavior decision
  • 9. Micromation  It will consequentially bring on the occurrence of quantum effect.  So many difficulties must be solved from new angles.
  • 10. Paul Benioff  Born :-May 1, 1930  American physicist who helped pioneer the field of quantum computing  Died :-March 29, 2022
  • 11. Paul Anthony Benioff  The conception of quantum robot.  Benioff showed that a computer could operate under the laws of quantum mechanics by describing a Schrödinger equation description of Turing machines.  1970s and 80s that demonstrated the theoretical possibility of quantum computers by describing the first quantum mechanical model of a computer.
  • 12. MQCU  Information processing center  Acts as cerebrum  It receives some tasks described using quantum language.  Exchanges information with its environment via quantum sensor  By sorting, analyzing, computing &processing all kinds of information including task information, environment information and sensing information
  • 13.  MQCU is made up of many QCUs  QCU(quantum computing units)  Each QCU accomplishes some specific tasks .  Exchange information with each other  Through quantum bus
  • 14. Quantum controller and acuator  It receives and process indications signal  From MQCU and informs actuator to carry out corresponding actions.  It acts as connection between the cerebrum and arm of quantum robot.
  • 15. Information acquisition units  Quantum robot need also perceive it’s environments and acquire information  Through information acquisition units.  In the present robot, quantum sensor perceives the information of it’s environments and the robot may also receive some other information from distant mainframe or other quantum robots through external communication unit.
  • 16.  The information to be acquired includs quantum information and classical information.  The quantum robot has communication interface to exchange information with distant mainframe or other quantum robots, which can constitute a multi quantum robot system.