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D-Index & Metrics

Engineering and Technology

D-Index
40
Citations
8052
World Ranking
7215
National Ranking
451

Overview

Jonathan M. Huntley is affiliated with Loughborough University in the United Kingdom. Their research is situated within the broad field of Engineering, focusing on several subfields including Instrumentation, Biomedical Engineering, Mechanical Engineering, Geophysics, and Computer Vision and Pattern Recognition.

The scientist's work primarily addresses topics related to Advanced Optical Sensing Technologies, Optical Coherence Tomography Applications, Advanced Measurement and Metrology Techniques, Optical measurement and interference techniques, Geotechnical Engineering and Underground Structures, Surface Roughness and Optical Measurements, and High-pressure geophysics and materials.

Among recent research contributions, the following papers showcase the scope and focus of their work:

  • High-speed range and velocity measurement using frequency scanning interferometry with adaptive delay lines [Invited], 2020, Journal of the Optical Society of America A
  • Adaptive delay lines for absolute distance measurements in high-speed long-range frequency scanning interferometry, 2020, OSA Continuum
  • High speed fringe projection for dynamic shape measurement using binary phase mask. Part 1: theory and simulation, 2022, Optics and Lasers in Engineering
  • Theoretical estimates of the parameters of longitudinal undular bores in polymethylmethacrylate bars based on their measured initial speeds, 2022, Proceedings of the Royal Society A Mathematical Physical and Engineering Sciences
  • High speed fringe projection for dynamic shape measurement using binary phase mask. Part 2: manufacture and test, 2022, Optics and Lasers in Engineering

Huntley frequently publishes in venues such as Optics and Lasers in Engineering, Journal of the Optical Society of America A, Proceedings of the Royal Society A Mathematical Physical and Engineering Sciences, OSA Continuum, and Journal of Dynamic Behavior of Materials.

Collaborations include regular coauthoring with researchers like Pablo D. Ruiz, C. R. Coggrave, Christos A. Pallikarakis, Curtis Hooper, and К. Р. Хуснутдинова, indicating a collaborative approach spanning multiple experts in related fields.

Best Publications

  • Temporal phase-unwrapping algorithm for automated interferogram analysis.

    J.M. Huntley;Henrik Saldner

  • Noise-immune phase unwrapping algorithm

    Huntley Jm

  • Temporal phase unwrapping: application to surface profiling of discontinuous objects.

    Henrik O. Saldner;Jonathan M. Huntley

  • Improved noise-immune phase-unwrapping algorithm.

    R. Cusack;J. M. Huntley;H. T. Goldrein

  • Fluidization of a two-dimensional granular system: Experimental study and scaling behavior.

    Stephen Warr;Jonathan M. Huntley;George T. H. Jacques

  • Unwrapping noisy phase maps by use of a minimum-cost-matching algorithm.

    J. R. Buckland;J. M. Huntley;S. R. E. Turner

  • Deformation, Strengths and Strains to Failure of Polymer Bonded Explosives

    S. J. P. Palmer;John Edwin Field;J. M. Huntley

  • Error-reduction methods for shape measurement by temporal phase unwrapping

    J.M. Huntley;Henrik O. Saldner

  • Shape measurement by temporal phase unwrapping: comparison of unwrapping algorithms

    J.M. Huntley;Henrik O. Saldner

  • Profilometry using temporal phase unwrapping and a spatial light modulator based fringe projector

    Henrik O. Saldner;Jonathan Mark Huntley

  • Contact Force Distribution Beneath a Three-Dimensional Granular Pile

    R. Brockbank;J. M. Huntley;J. M. Huntley;Robin Ball

  • Automated fringe pattern analysis in experimental mechanics: A review

    J M Huntley

  • Speckle photography fringe analysis: assessment of current algorithms.

    J M Huntley

  • Phase-shifted dynamic speckle pattern interferometry at 1 kHz

    Jonathan M. Huntley;Guillermo H. Kaufmann;David Kerr

  • Granular temperature profiles in three-dimensional vibrofluidized granular beds

    R. D. Wildman;J. M. Huntley;D. J. Parker

  • Single-particle motion in three-dimensional vibrofluidized granular beds

    Wildman Rd;Huntley Jm;Hansen Jp;Parker Dj

  • Convection in highly fluidized three-dimensional granular beds.

    R. D. Wildman;J. M. Huntley;D. J. Parker

  • An image processing system for the analysis of speckle photographs

    J M Huntley

  • Tracking the translational and rotational motion of granular particles: Use of high-speed photography and image processing

    Stephen Warr;George T.H. Jacques;Jonathan M. Huntley

  • Three-Dimensional Noise-Immune Phase Unwrapping Algorithm

    Jonathan M. Huntley

Frequent Co-Authors

Ricky D. Wildman
Ricky D. Wildman University of Nottingham
Ian A. Ashcroft
Ian A. Ashcroft University of Nottingham
John E. Field
John E. Field University of Cambridge
Rhodri Cusack
Rhodri Cusack Trinity College Dublin
David Parker
David Parker University of Oxford
Fabrice Pierron
Fabrice Pierron University of Southampton
Andrew J. Sederman
Andrew J. Sederman University of Cambridge
Lynn F. Gladden
Lynn F. Gladden University of Cambridge
Jean-Pierre Hansen
Jean-Pierre Hansen University of Cambridge
Neil Bourne
Neil Bourne University of Manchester

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