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Скачать или смотреть Quantum Multibody Dynamics Initiative: Pushing the engineering boundaries beyond existing techniques

  • Farbod khoshnoud
  • 2019-08-06
  • 854
Quantum Multibody Dynamics Initiative: Pushing the engineering boundaries beyond existing techniques
Quantum Multibody DynamicsQuantum RoboticsQuantum Cooperative RoboticsQuantum AutonomyQuantum CryptographyQuantum EntanglementExperimental Quantum CryptographyExperimental Quantum EntanglementQuantum Control
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Описание к видео Quantum Multibody Dynamics Initiative: Pushing the engineering boundaries beyond existing techniques

For the first time, we are tackling the intersection between Quantum Science and Technology, and Robotic System Autonomy. We want to bring together the two areas of Quantum Technologies and Robotics/System Autonomy to explore the opportunities at the interface that offer potential for future applications in advanced autonomy, mechatronics, autonomy, security and cyber-physical systems in multiple domains, going beyond existing techniques. Our research is focused on the engineering applications of quantum paradigms (protocols, algorithms, sensing and control techniques) that will enable new applications and capabilities for increased autonomy of macroscopic systems as robotic platforms (not the aspects of the science of Quantum, nor quantum computing alone). The research includes the experimental aspects of quantum entanglement and cryptography that can be demonstrated today in the lab, and their integration and testing with multi-agent robotic controls. Our Quantum Multibody Dynamics research is an initiative to bring together quantum mechanics and engineering for many applications such as robotics, control, and autonomy with unmatched quantum capabilities such as Guaranteed Security, Ultimate Speed for control, and entanglement, which allows capabilities beyond any classical and existing engineering techniques in cooperative multi-agent robotics, controls, and autonomy. This original research is carried out by Dr. Farbod Khoshnoud (from California State Polytechnic University, Pomona, and a research affiliate at JPL), Dr. Marco Quadrelli (from NASA JPL, Caltech), Professor Ibrahim I. Esat (from Brunel University, London, UK), and Professor Clarence W. De Silva (from the University of British Columbia), For some brief information about this research please see Figures 11 and 12 in the following PDF: http://aseepsw2019.calstatela.edu/pap...

Publications
Farbod Khoshnoud, Ibrahim I. Esat (Brunel), Clarence W. De Silva (UBC), Marco B. Quadrelli (JPL), Quantum Muultibody Dynamics, 2019, in progress.
Farbod Khoshnoud, Ibrahim I. Esat (Brunel), Clarence W. De Silva (UBC), Marco B. Quadrelli (JPL), Quantum Collaborative Autonomy: Experimental Quantum Cryptography and Entanglement for collaborative robotics, 2019, in progress.
Farbod Khoshnoud, Ibrahim I. Esat (Brunel), Marco B. Quadrelli (JPL), Dario Robinson (UPD Police), Edited by Clarence W. de Silva, Quantum Cooperative Robotics and Autonomy, Instrumentation Journal, 2019, accepted.
Farbod Khoshnoud, II Esat, CW De Silva, Marco B. Quadrelli (JPL), Quantum Network of Cooperative Unmanned Autonomous Systems, Unmanned Systems journal, 2019, Accepted.
Farbod Khoshnoud, Dario Robinson (Pomona Police), Ibrahim I. Esat (Brunel), Clarence W. De Silva (UBC), Marco B. Quadrelli (JPL), Research-informed service-learning in Mechatronics and Dynamic Systems, American Society for Engineering Education conference, Los Angeles, April 4-5, 2019, Paper ID #27850.
Farbod Khoshnoud, C. W. de Silva, and I. I. Esat, Quantum Entanglement of Autonomous Vehicles for Cyber-physical security, IEEE International Conference on Systems, Man, and Cybernetics, Banff, Canada, October 5–8, pp. 2655- 2660, 2017.

For more videos please see 'Farbod Khoshnoud' YouTube channel:
   / @farbodevgeniya  

Our related publications and more information can be found on:
https://www.cpp.edu/faculty/fkhoshnou...

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