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Mir Behrad Khamesee

Mir Behrad Khamesee

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
33
Citations
3597
World Ranking
3067
National Ranking
130

Overview

Mir Behrad Khamesee is affiliated with the University of Waterloo in Canada, focusing research primarily within the field of engineering. Their work spans several subfields, including mechanical engineering, control and systems engineering, electrical and electronic engineering, condensed matter physics, and biomedical engineering.

The scientist's research topics cover a broad range of areas related to advanced engineering and technology. Key topics include magnetic bearings and levitation dynamics, micro and nano robotics, electric motor design and analysis, additive manufacturing materials and processes, modular robots and swarm intelligence, welding techniques and residual stresses, as well as soft robotics and applications.

Frequent collaborators in their research include Yang Wang, Ehsan Toyserkani, Chanuphon Trakarnchaiyo, Zhenchuan Xu, and Parichit Kumar. These coauthors have contributed to multiple publications alongside Mir Behrad Khamesee, indicating ongoing research partnerships.

Significant venues where their research has been published include Mechatronics, Actuators, Sensors, Micromachines, and IEEE Transactions on Magnetics. These publications reflect the interdisciplinary nature of their work, bridging mechanical, electrical, and materials engineering.

Several recent papers exemplify the scope of their research:

  • Non-Destructive Testing Using Eddy Current Sensors for Defect Detection in Additively Manufactured Titanium and Stainless-Steel Parts (2022, Sensors)
  • MagTable: A tabletop system for 6-DOF large range and completely contactless operation using magnetic levitation (2021, Mechatronics)
  • Design and Fabrication of a Magnetic Actuator for Torque and Force Control Estimated by the ANN/SA Algorithm (2022, Micromachines)
  • Development of an Electromagnetic Micromanipulator Levitation System for Metal Additive Manufacturing Applications (2022, Micromachines)
  • Development of a Magnetic Levitation System for Additive Manufacturing: Simulation Analyses (2020, IEEE Transactions on Magnetics)

Best Publications

  • Design and control of a microrobotic system using magnetic levitation

    M.B. Khamesee;N. Kato;Y. Nomura;T. Nakamura

  • Design and modeling of a magnetic shock absorber based on eddy current damping effect

    Babak Ebrahimi;Mir Behrad Khamesee;M. Farid Golnaraghi

  • Piezoelectric and triboelectric nanogenerators: Trends and impacts

    Hassan Askari;Amir Khajepour;Mir Behrad Khamesee;Zia Saadatnia

  • A comprehensive analytical model for laser powder-fed additive manufacturing

    Yuze Huang;Mir Behrad Khamesee;Ehsan Toyserkani

  • Eddy current damper feasibility in automobile suspension: modeling, simulation and testing

    Babak Ebrahimi;Mir Behrad Khamesee;Farid Golnaraghi

  • A hybrid electromagnetic shock absorber for active vehicle suspension systems

    Babak Ebrahimi;Hamidreza Bolandhemmat;Mir Behrad Khamesee;Farid Golnaraghi

  • Development of a novel type of microrobot for biomedical application

    Shuxiang Guo;Qinxue Pan;Mir Behrad Khamesee

  • A hybridized electromagnetic-triboelectric self-powered sensor for traffic monitoring: concept, modelling, and optimization

    Hassan Askari;Ehsan Asadi;Zia Saadatnia;Amir Khajepour

  • Rapid prediction of real-time thermal characteristics, solidification parameters and microstructure in laser directed energy deposition (powder-fed additive manufacturing)

    Yuze Huang;Mohammad Ansari;Hamed Asgari;Mohammad Hossein Farshidianfar

  • A new physics-based model for laser directed energy deposition (powder-fed additive manufacturing): From single-track to multi-track and multi-layer

    Yuze Huang;Mir Behrad Khamesee;Ehsan Toyserkani

  • Permanent magnet configuration in design of an eddy current damper

    Babak Ebrahimi;Mir Behrad Khamesee;Farid Golnaraghi

  • Embedded self-powered sensing systems for smart vehicles and intelligent transportation

    Hassan Askari;Amir Khajepour;Mir Behrad Khamesee;Zhong Lin Wang

  • A novel eddy current damper: theory and experiment

    Babak Ebrahimi;Mir Behrad Khamesee;Farid Golnaraghi

  • Nonlinear controller design for a magnetic levitation device

    Ehsan Shameli;Mir Behrad Khamesee;Jan Paul Huissoon

  • Towards self-powered sensing using nanogenerators for automotive systems

    Hassan Askari;Ehsan Hashemi;Amir Khajepour;Mir Behrad Khamesee

  • Magnetic targeting of aerosol particles for cancer therapy

    Javed Ally;Benjamin Martin;Mir Behrad Khamesee;Wilson Roa

  • Tire Condition Monitoring and Intelligent Tires Using Nanogenerators Based on Piezoelectric, Electromagnetic, and Triboelectric Effects

    Hassan Askari;Ehsan Hashemi;Amir Khajepour;Mir Behrad Khamesee

  • Non-Destructive Testing Using Eddy Current Sensors for Defect Detection in Additively Manufactured Titanium and Stainless-Steel Parts

    Unknown

  • Dual-Axial Motion Control of a Magnetic Levitation System Using Hall-Effect Sensors

    Xiaodong Zhang;Moein Mehrtash;Mir Behrad Khamesee

  • A new adaptive hybrid electromagnetic damper: modelling, optimization, and experiment

    Ehsan Asadi;Roberto Ribeiro;Mir Behrad Khamesee;Amir Khajepour

  • Design and Implementation of a Micromanipulation System Using a Magnetically Levitated MEMS Robot

    C. Elbuken;M.B. Khamesee;M. Yavuz

  • Bilateral Macro–Micro Teleoperation Using Magnetic Levitation

    M Mehrtash;N Tsuda;M B Khamesee

  • A flexible hybridized electromagnetic-triboelectric multi-purpose self-powered sensor

    Hassan Askari;Zia Saadatnia;Ehsan Asadi;Amir Khajepour

Frequent Co-Authors

Amir Khajepour
Amir Khajepour University of Waterloo
Zhong Lin Wang
Zhong Lin Wang Georgia Institute of Technology
Jean W. Zu
Jean W. Zu Stevens Institute of Technology
Alidad Amirfazli
Alidad Amirfazli York University
Shuxiang Guo
Shuxiang Guo Southern University of Science and Technology

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