Usman Zabit

About Usman Zabit

Usman Zabit, With an exceptional h-index of 20 and a recent h-index of 17 (since 2020), a distinguished researcher at National University of Sciences and Technology, specializes in the field of Digital Signal Processing, Opto-electronics, Laser Sensing, Self-Mixing Interferometry.

His recent articles reflect a diverse array of research interests and contributions to the field:

Optical Feedback FM-to-AM Conversion with integrated Micro-Ring Resonator for Displacement Sensing Applications

Optical Feedback FM-to-AM Conversion With Photonic Integrated Circuits for Displacement Sensing Applications

Direct Estimation of the Optical Feedback Factor C From the Amplitude of the Optical Feedback Interferometric Signal

Integration of Zero Crossing Method in a Non-Uniform Sampling System using Optical Feedback Interferometry

Augmentation-assisted robust fringe detection on unseen experimental signals applied to optical feedback interferometry using a deep network

Towards integrated optical feedback fm-to-am conversion in silicon nitride for displacement sensing applications

Fringe detection and displacement sensing for variable optical feedback-based self-mixing interferometry by using deep neural networks

Non-Uniform Sampling Theory applied to FM Channel Optical Feedback Interferometry for Displacement Sensors

Usman Zabit Information

University

Position

SEECS Pakistan

Citations(all)

1185

Citations(since 2020)

712

Cited By

782

hIndex(all)

20

hIndex(since 2020)

17

i10Index(all)

33

i10Index(since 2020)

25

Email

University Profile Page

National University of Sciences and Technology

Google Scholar

View Google Scholar Profile

Usman Zabit Skills & Research Interests

Digital Signal Processing

Opto-electronics

Laser Sensing

Self-Mixing Interferometry

Top articles of Usman Zabit

Title

Journal

Author(s)

Publication Date

Optical Feedback FM-to-AM Conversion with integrated Micro-Ring Resonator for Displacement Sensing Applications

Journal of Physics: Conference Series

Clément Deleau

Han Cheng Seat

Frederic Surre

Usman Zabit

Pierre-François Calmon

...

2024/2/1

Optical Feedback FM-to-AM Conversion With Photonic Integrated Circuits for Displacement Sensing Applications

Journal of Lightwave Technology

Clément Deleau

Han Cheng Seat

Frederic Surre

Usman Zabit

Francis Jayat

...

2024/1/29

Direct Estimation of the Optical Feedback Factor C From the Amplitude of the Optical Feedback Interferometric Signal

IEEE Transactions on Instrumentation and Measurement

Olivier Bernal

Han Cheng Seat

Usman Zabit

Frederic Surre

2023/8/1

Integration of Zero Crossing Method in a Non-Uniform Sampling System using Optical Feedback Interferometry

IEEE Sensors Journal

Hajira S Bazaz

Mohaimen M Fatimah

Layba Asim

Usman Zabit

Olivier D Bernal

2023/5/17

Augmentation-assisted robust fringe detection on unseen experimental signals applied to optical feedback interferometry using a deep network

IEEE Transactions on Instrumentation and Measurement

Sumair Saeed Khurshid

Wajahat Hussain

Usman Zabit

Olivier D Bernal

2023/3/2

Towards integrated optical feedback fm-to-am conversion in silicon nitride for displacement sensing applications

Clément Deleau

Thidsanu Apiphatnaphakul

Han Cheng Seat

Frederic Surre

Usman Zabit

...

2022/10/30

Fringe detection and displacement sensing for variable optical feedback-based self-mixing interferometry by using deep neural networks

Sensors

Asra Abid Siddiqui

Usman Zabit

Olivier D Bernal

2022/12/14

Non-Uniform Sampling Theory applied to FM Channel Optical Feedback Interferometry for Displacement Sensors

Olivier Bernal

Han Cheng Seat

Frederic Surre

Usman Zabit

Clément Deleau

...

2022/10/30

On two Fourier transform-based methods for estimation of displacement and parameters of self-mixing interferometry over major optical feedback regimes

IEEE Sensors Journal

Junaid Iqbal Khan

Usman Zabit

2021/2/26

PH‐RLS: A parallel hybrid recursive least square algorithm for self‐mixing interferometric laser sensor

IET optoelectronics

Zohaib A Khan

Tassadaq Hussain

Usman Zabit

Muhammad Usman

Eduard Ayguade

2021/10

Implementation of a high-accuracy phase unwrapping algorithm using parallel-hybrid programming approach for displacement sensing using self-mixing interferometry

The Journal of Supercomputing

Tassadaq Hussain

Saqib Amin

Usman Zabit

Eduard Ayguadé

2021/9/1

Nanometric vibration sensing using spectral processing of laser self-mixing feedback phase

IEEE Sensors Journal

Nauman Ali

Usman Zabit

Olivier D Bernal

2021/5/25

Toward an Estimation of the Optical Feedback Factor C on the Fly for Displacement Sensing

Sensors

Olivier D Bernal

Usman Zabit

Francis Jayat

Thierry Bosch

2021/5/19

Variable optical feedback-based behavioral model of a self-mixing laser sensor

IEEE Sensors Journal

Usman Haider

Usman Zabit

Olivier D Bernal

2021/5/4

Adaptive estimation and reduction of noises affecting a self-mixing interferometric laser sensor

IEEE Sensors Journal

Zohaib A Khan

Usman Zabit

Olivier D Bernal

Tassadaq Hussain

2020/5/8

High resolution laser self-mixing displacement sensor under large variation in optical feedback and speckle

IEEE sensors journal

Saqib Amin

Usman Zabit

Olivier D Bernal

Tassadaq Hussain

2020/4/20

Deformation method of self-mixing laser sensor’s feedback phase for estimation of optical feedback coupling factor and displacement

IEEE Sensors Journal

Junaid Iqbal Khan

Usman Zabit

2020/12/21

Sub-λ/2 displacement sensor with nanometric precision based on optical feedback interferometry used as a non-uniform event-based sampling system

IEEE Sensors Journal

Olivier D Bernal

Usman Zabit

Francis Jayat

Thierry Bosch

2020/1/30

Classification of laser modality for a self-mixing interferometric sensor

Applied Optics

Muhammad Usman

Usman Zabit

Syed Asad Alam

2020/12/20

Detection of Multi-Modality in Self-Mixing Interferometry

Muhammad Usman

Usman Zabit

Syed Asad Alam

2020/1/14

See List of Professors in Usman Zabit University(National University of Sciences and Technology)