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Engineering and Technology

D-Index
49
Citations
7542
World Ranking
4409
National Ranking
292

Overview

Anthony J. Peyton is affiliated with the University of Manchester in the United Kingdom and specializes in Engineering, with a significant focus on Mechanical Engineering. Their research encompasses various subfields including Mechanics of Materials, Ocean Engineering, Electrical and Electronic Engineering, and Electronic, Optical and Magnetic Materials.

The scientist's body of work extensively covers Non-Destructive Testing Techniques, reflected in 126 publications, alongside Welding Techniques and Residual Stresses, Ultrasonics and Acoustic Wave Propagation, Geophysical Methods and Applications, Magnetic Properties and Applications, Geophysical and Geoelectrical Methods, and Electrical and Bioimpedance Tomography.

Recent publications by Anthony J. Peyton include:

  • Thickness measurement of metallic plates with finite planar dimension using eddy current method, 2020, IEEE Transactions on Instrumentation and Measurement
  • Depth Evaluation for Metal Surface Defects by Eddy Current Testing Using Deep Residual Convolutional Neural Networks, 2021, IEEE Transactions on Instrumentation and Measurement
  • A Novel Perturbed Matrix Inversion Based Method for the Acceleration of Finite Element Analysis in Crack-Scanning Eddy Current NDT, 2020, IEEE Access
  • Methods of Controlling Lift-Off in Conductivity Invariance Phenomenon for Eddy Current Testing, 2020, IEEE Access
  • Measurement of the Radius of Metallic Plates Based on a Novel Finite Region Eigenfunction Expansion (FREE) Method, 2020, IEEE Sensors Journal

Frequent co-authors collaborating with Peyton include:

  • Wuliang Yin
  • Ruochen Huang
  • Mingyang Lu
  • Xiaobai Meng
  • Liming Chen

The scientist's work is often published in several prominent venues, notably:

  • Preprints.org
  • IEEE Transactions on Instrumentation and Measurement
  • IEEE Sensors Journal
  • Sensors
  • NDT & E International

Best Publications

  • An overview of electromagnetic inductance tomography: Description of three different systems

    A J Peyton;Z Z Yu;G Lyon;S Al-Zeibak

  • Thickness measurement of non-magnetic plates using multi-frequency eddy current sensors

    W. Yin;A.J. Peyton

  • Digital discrimination of neutrons and γ-rays in liquid scintillators using pulse gradient analysis

    B. D’Mellow;M.D. Aspinall;R.O. Mackin;M.J. Joyce

  • Chemical engineering applications of electrical process tomography

    H.S. Tapp;A.J. Peyton;E.K. Kemsley;R.H. Wilson

  • A planar EMT system for the detection of faults on thin metallic plates

    W Yin;A J Peyton

  • Hardware and software design for an electromagnetic induction tomography (EMT) system for high contrast metal process applications

    X Ma;A J Peyton;S R Higson;A Lyons

  • Analysis of the Liftoff Effect of Phase Spectra for Eddy Current Sensors

    Wuliang Yin;R. Binns;S.J. Dickinson;C. Davis

  • Simultaneous measurement of distance and thickness of a thin metal plate with an electromagnetic sensor using a simplified model

    Wuliang Yin;A.J. Peyton;S.J. Dickinson

  • Time efficient auto-focussing algorithms for ultrasonic inspection of dual-layered media using Full Matrix Capture

    Miles Weston;Peter Mudge;Claire Davis;Anthony Peyton

  • Thickness Measurement of Metallic Plates With Finite Planar Dimension Using Eddy Current Method

    Ruochen Huang;Mingyang Lu;Anthony Peyton;Wuliang Yin

  • Noncontact Characterization of Carbon-Fiber-Reinforced Plastics Using Multifrequency Eddy Current Sensors

    Wuliang Yin;P.J. Withers;U. Sharma;A.J. Peyton

  • A three-dimensional inverse finite-element method applied to experimental eddy-current imaging data

    M. Soleimani;W.R.B. Lionheart;A.J. Peyton;Xiandong Ma

  • Analysis of the Lift-off Effect of Phase Spectra for Eddy Current Sensors

    W. Yin;R. Binns;S.J. Dickinson;C. Davis

  • Reducing the Lift-Off Effect on Permeability Measurement for Magnetic Plates From Multifrequency Induction Data

    Mingyang Lu;Wenqian Zhu;Liyuan Yin;Anthony J. Peyton

  • A Novel Compensation Algorithm for Thickness Measurement Immune to Lift-Off Variations Using Eddy Current Method

    Mingyang Lu;Liyuan Yin;Anthony J. Peyton;Wuliang Yin

  • Eddy current measurements of electrical conductivity and magnetic permeability of porous metals

    X. Ma;A.J. Peyton;Y.Y. Zhao

  • Simultaneous Noncontact Measurement of Water Level and Conductivity

    Wuliang Yin;A.J. Peyton;G. Zysko;R. Denno

  • Determination of the Magnetic Permeability, Electrical Conductivity, and Thickness of Ferrite Metallic Plates Using a Multifrequency Electromagnetic Sensing System

    Mingyang Lu;Yuedong Xie;Wenqian Zhu;Anthony Peyton

  • Measurement of permeability and ferrite/austenite phase fraction using a multi-frequency electromagnetic sensor

    W. Yin;W. Yin;X.J. Hao;A.J. Peyton;M. Strangwood

  • Imaging the continuous conductivity profile within layered metal structures using inductance spectroscopy

    Wuliang Yin;S.J. Dickinson;A.J. Peyton

  • Conductivity Lift-off Invariance and measurement of permeability for ferrite metallic plates

    Mingyang Lu;Hanyang Xu;Wenqian Zhu;Liyuan Yin

Frequent Co-Authors

Wuliang Yin
Wuliang Yin University of Manchester
Manuchehr Soleimani
Manuchehr Soleimani University of Bath
Frank Stefani
Frank Stefani Helmholtz-Zentrum Dresden-Rossendorf
Sven Eckert
Sven Eckert Helmholtz-Zentrum Dresden-Rossendorf
Gunter Gerbeth
Gunter Gerbeth Helmholtz-Zentrum Dresden-Rossendorf
Mohd Zaid Abdullah
Mohd Zaid Abdullah Universiti Sains Malaysia
William R B Lionheart
William R B Lionheart University of Manchester
M. S. Beck
M. S. Beck University of Manchester
Jialuo Ding
Jialuo Ding Cranfield University
Philip J. Withers
Philip J. Withers University of Manchester

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