Difference between revisions of "AlexanderKlimchik"

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== Personal Information ==
 
== Personal Information ==
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[[File:Klimchik.jpg|200px|thumb|left|Alexandr Klimchik]]
   
 
''' Email:''' a.klimchik@innopolis.ru
 
''' Email:''' a.klimchik@innopolis.ru
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* [https://eduwiki.innopolis.university/index.php/BSc:IntroductionToRobotics Introduction To Robotics]
 
* [https://eduwiki.innopolis.university/index.php/BSc:IntroductionToRobotics Introduction To Robotics]
 
* [https://eduwiki.innopolis.university/index.php/MSc:AdvancedRobotics Advanced Robotics]
 
* [https://eduwiki.innopolis.university/index.php/MSc:AdvancedRobotics Advanced Robotics]
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== Research interests ==
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* Advanced elasto-static and elasto-dynamic modeling for robotic manipulators
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* Accuracy improvement for robotic-based application (Machining, Incremental metal forming, polishing, Fiber placement for composite materials, etc.)
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* Embodied intelligence: design new robotic component with intrinsic intelligence and learning capabilities on the mechanical level on the mechanical level
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* Interactive human-robot collaboration
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* Calibration of parallel robots
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* Machine learning in robotic applications
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== Ongoing projects ==
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* Modelling and calibration of cable-driven parallel robots
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* Incremental RoboForming (joint with IIT Madras, India)
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* Interactive human-robots supervision in unstructured environment (with LS2N/IMT Atlantique, France)
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* Stiffness modeling and calibration for parallel robotic manipulators (joint with Amirkabir University of Technology, Iran)
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== [https://scholar.google.com/citations?user=KLpMBj0AAAAJ&hl=en&oi=ao Google Scholar Profile, h=22] ==
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== [https://www.scopus.com/authid/detail.uri?authorId=37016245900 Scopus Profile, h=16] ==

Latest revision as of 15:24, 28 October 2021

Personal Information

Alexandr Klimchik

Email: a.klimchik@innopolis.ru

Courses

Research interests

  • Advanced elasto-static and elasto-dynamic modeling for robotic manipulators
  • Accuracy improvement for robotic-based application (Machining, Incremental metal forming, polishing, Fiber placement for composite materials, etc.)
  • Embodied intelligence: design new robotic component with intrinsic intelligence and learning capabilities on the mechanical level on the mechanical level
  • Interactive human-robot collaboration
  • Calibration of parallel robots
  • Machine learning in robotic applications

Ongoing projects

  • Modelling and calibration of cable-driven parallel robots
  • Incremental RoboForming (joint with IIT Madras, India)
  • Interactive human-robots supervision in unstructured environment (with LS2N/IMT Atlantique, France)
  • Stiffness modeling and calibration for parallel robotic manipulators (joint with Amirkabir University of Technology, Iran)

Google Scholar Profile, h=22

Scopus Profile, h=16