
Overview
Background
Prof. Amin Abbosh specializes in Medical Microwave Imaging and Microwave and Millimeter-wave Engineering. His work focuses on designing and developing advanced imaging and sensing systems using electromagnetic techniques at radio-wave frequencies.
Prof. Abbosh’s significant contributions include the creation of innovative imaging systems that leverage his expertise in applied electromagnetics and microwave engineering. He has developed comprehensive analytical and computational frameworks, incorporating signal-processing techniques for detection and AI for classification. This approach has led to a new modality for detection and imaging, combining physics-guided and data-driven methods. His work is protected by over 16 patents.
In Communication Technologies, Prof. Abbosh's work focuses on designing flat-panel, low-cost reconfigurable antennas. These antennas form ground satellite terminals that communicate with low-earth-orbit (LEO) satellites, providing reliable broadband access to remote and regional communities. This technology supports e-health services, distance education, and business productivity, and can be used in various on-the-move environments.
Availability
- Professor Amin Abbosh is:
- Available for supervision
- Media expert
Fields of research
Qualifications
- Bachelor of Science, University of Mosul
- Masters (Coursework) of Science, University of Mosul
- Doctor of Philosophy, University of Mosul
- Postgraduate Diploma in Higher Education, The University of Queensland
- Doctor of Philosophy, The University of Queensland
Research interests
-
Electromagnetic Medical Imaging
Electromagnetic Medical Imaging Systems including hardware (microwave devices and antennas), applied electromagnetic, computational electromagnetic, signal processing, and artificial intelligence
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Microwave Engineering
Antennas, microwave devices
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Engineering Electromagnetics
Applied Electromagnetics in Electrical and Biomedical Engineering
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Artificial Intelligence
AI in Electromagnetics and Microwave Engineering
Works
Search Professor Amin Abbosh’s works on UQ eSpace
2018
Conference Publication
The effects of frequency variation on the induced fields of transcranial magnetic stimulation systems
Abu Yosef, Rawan, Mobashsher, Ahmed Toaha and Abbosh, Amin (2018). The effects of frequency variation on the induced fields of transcranial magnetic stimulation systems. Australian Microwave Symposium (AMS), Brisbane, Australia, 6-7 February 2018. New York, NY, United States: IEEE. doi: 10.1109/AUSMS.2018.8346997
2018
Conference Publication
Millimeter-wave substrate integrated waveguide probe for near-field skin cancer detection
Mansutti, Giulia, Mobashsher, Ahmed Toaha and Abbosh, Amin M. (2018). Millimeter-wave substrate integrated waveguide probe for near-field skin cancer detection. Australian Microwave Symposium (AMS), Brisbane, Australia, 6-7 February 2018. New York, NY, United States: IEEE. doi: 10.1109/AUSMS.2018.8346992
2018
Conference Publication
Compact Yagi antenna utilizing mu-negative metamaterial loading of director element
Rezaeieh, Sasan Ahdi, Antoniades, Marco A. and Abbosh, Amin M. (2018). Compact Yagi antenna utilizing mu-negative metamaterial loading of director element. 12th European Conference on Antennas and Propagation, EuCAP 2018, London, United Kingdom, 9 -13 April 2018. Stevenage, Hertfordshire, United Kingdom: Institution of Engineering and Technology. doi: 10.1049/cp.2018.1123
2018
Conference Publication
A reconfigurable antenna with three radiation patterns for portable multi-slice electromagnetic imaging systems
Mobashsher, Ahmed Toaha and Abbosh, Amin (2018). A reconfigurable antenna with three radiation patterns for portable multi-slice electromagnetic imaging systems. Australian Microwave Symposium (AMS), Brisbane, Australia, 6-7 February 2018. New York, NY, United States: IEEE. doi: 10.1109/AUSMS.2018.8346989
2018
Conference Publication
Flexible quasi-yagi antenna arrays for wearable electromagnetic head imaging based on polymer technology
Alqadami, Abdulrahman S. M., Bialkowski, Konstanty and Abbosh, Amin (2018). Flexible quasi-yagi antenna arrays for wearable electromagnetic head imaging based on polymer technology. Australian Microwave Symposium (AMS), Brisbane, Australia, 6-7 February 2018. New York, NY, United States: IEEE. doi: 10.1109/AUSMS.2018.8346991
2018
Conference Publication
Wideband tunable reflection-type phase shifter using high-directivity directional coupler
Zhu, He and Abbosh, A. M. (2018). Wideband tunable reflection-type phase shifter using high-directivity directional coupler. Australian Microwave Symposium (AMS), Brisbane, Australia, 6-7 February 2018. Piscataway, NJ, United States: IEEE. doi: 10.1109/AUSMS.2018.8346976
2018
Conference Publication
Resonance sensitivity and quality factor of implantable loop antenna loaded with interdigital capacitor in the cerebral spinal fluid
Manoufali, Mohamed and Abbosh, Amin (2018). Resonance sensitivity and quality factor of implantable loop antenna loaded with interdigital capacitor in the cerebral spinal fluid. IEEE-Antennas-and-Propagation-Society International Symposium on Antennas and Propagation / USNC/URSI National Radio Science Meeting, Boston, MA, United States, Jul 08-13, 2018. Piscataway, NJ, United States: IEEE. doi: 10.1109/APUSNCURSINRSM.2018.8609308
2018
Conference Publication
Microwave split-ring resonator array for imaging of near-surface material defects
Trakic, Adnan, Wang, Yifan, Foster, Darren and Abbosh, Amin (2018). Microwave split-ring resonator array for imaging of near-surface material defects. Australian Microwave Symposium (AMS), Brisbane, Australia, 6-7 February 2018. New York, NY, United States: IEEE. doi: 10.1109/AUSMS.2018.8346975
2018
Conference Publication
Conformal array-based directional antenna system for biomedical applications
Mansutti, Giulia, Mobashsher, Ahmed Toaha and Abbosh, Amin M. (2018). Conformal array-based directional antenna system for biomedical applications. Australian Microwave Symposium (AMS), Brisbane, Australia, 6-7 February 2018. New York, NY, United States: IEEE. doi: 10.1109/AUSMS.2018.8346996
2018
Conference Publication
A novel connected PIFA array with MIMO configuration for 5G mobile applications
Ikram, Muhammad, Wang, Yifan, Sharawi, Mohammad S. and Abbosh, Amin (2018). A novel connected PIFA array with MIMO configuration for 5G mobile applications. Australian Microwave Symposium (AMS), Brisbane, Australia, 6-7 February 2018. New York, NY, United States: IEEE. doi: 10.1109/AUSMS.2018.8346961
2018
Conference Publication
Changes in epidermal dielectric properties due to skin cancer across the band 1 to 50 GHz
Mohammed, B. J., Naqvi, S. A. R., Manoufali, M., Bialkowski, K. and Abbosh, A. M. (2018). Changes in epidermal dielectric properties due to skin cancer across the band 1 to 50 GHz. Australian Microwave Symposium (AMS), Brisbane, Australia, 6-7 February 2018. New York, NY, United States: IEEE. doi: 10.1109/AUSMS.2018.8346990
2018
Conference Publication
Dual band circular MIMO antenna system for 5G wireless devices
Ikram, Muhammad, Wang, Yifan, Sharawi, Mohammad S. and Abbosh, Amin (2018). Dual band circular MIMO antenna system for 5G wireless devices. IEEE Antennas and Propagation Society International Symposium on Antennas and Propagation / USNC/URSI National Radio Science Meeting, Boston, Massachusetts, 8-13 July 2018. New York, NY, United States: IEEE. doi: 10.1109/APUSNCURSINRSM.2018.8609026
2018
Conference Publication
Development of 4th order optimized debye model for the human head tissues at the sub-1GHz
Manoufali, Mohamed, Naqvi, S. A. R. and Abbosh, Amin (2018). Development of 4th order optimized debye model for the human head tissues at the sub-1GHz. Australian Microwave Symposium (AMS), Brisbane, Australia, 6-7 February 2018. New York, NY, United States: IEEE. doi: 10.1109/AUSMS.2018.8346973
2018
Conference Publication
Accurate fourth-order debye model for the head tissues across the 0.1–1 GHz band using metaheuristic genetic algorithm
Manoufali, Mohamed, Naqvi, Syed Akbar Raza and Abbosh, Amin M. (2018). Accurate fourth-order debye model for the head tissues across the 0.1–1 GHz band using metaheuristic genetic algorithm. Piscataway, NJ, United States: Institute of Electrical and Electronics Engineers. doi: 10.1109/jerm.2018.2809621
2018
Conference Publication
Compact stepped slot antenna with unidirectional radiation for animal head imaging system
Mohammed, B. J., Bialkowski, K. S. and Abbosh, A. M. (2018). Compact stepped slot antenna with unidirectional radiation for animal head imaging system. Australian Microwave Symposium (AMS), Brisbane, Australia, 6-7 February 2018. New York, NY, United States: IEEE. doi: 10.1109/AUSMS.2018.8346995
2018
Conference Publication
Design of a capacitively loaded implantable loop antenna in the cerebral spinal fluid
Manoufali, Mohamed and Abbosh, Amin (2018). Design of a capacitively loaded implantable loop antenna in the cerebral spinal fluid. IEEE-Antennas-and-Propagation-Society International Symposium on Antennas and Propagation / USNC/URSI National Radio Science Meeting, Boston, MA, United States, 8-13 July 2018. Piscataway, NJ, United States: IEEE. doi: 10.1109/APUSNCURSINRSM.2018.8609318
2018
Conference Publication
Fast onsite electromagnetic imaging method for medical applications
Afsari, Arman and Abbosh, Amin (2018). Fast onsite electromagnetic imaging method for medical applications. Australian Microwave Symposium (AMS), Brisbane, Australia, 6-7 February 2018. New York, United States: IEEE. doi: 10.1109/AUSMS.2018.8346993
2018
Conference Publication
Reconfigurable shorted patch antenna with polarization and pattern diversity
Nguyen-Trong, Nghia , Mobashsher, Ahmed Toaha and Abbosh, Amin M. (2018). Reconfigurable shorted patch antenna with polarization and pattern diversity. Australian Microwave Symposium (AMS), Brisbane, Australia, 6-7 February 2018. New York, NY, United States: IEEE. doi: 10.1109/AUSMS.2018.8346965
2017
Journal Article
A Compact Tunable Directional Coupler with Continuously Tuned Differential Phase
Zhu, He and Abbosh, Amin M. (2017). A Compact Tunable Directional Coupler with Continuously Tuned Differential Phase. IEEE Microwave and Wireless Components Letters, 28 (1) 8226785, 19-21. doi: 10.1109/LMWC.2017.2779819
2017
Journal Article
Boundary Estimation of Imaged Object in Microwave Medical Imaging Using Antenna Resonant Frequency Shift
Zamani, A., Rezaeieh, S. Ahdi, Bialkowski, K. S. and Abbosh, A. M. (2017). Boundary Estimation of Imaged Object in Microwave Medical Imaging Using Antenna Resonant Frequency Shift. IEEE Transactions on Antennas and Propagation, 66 (2) 8169058, 927-936. doi: 10.1109/TAP.2017.2780898
Funding
Current funding
Past funding
Supervision
Availability
- Professor Amin Abbosh is:
- Available for supervision
Before you email them, read our advice on how to contact a supervisor.
Available projects
-
Multi-channel, multi-frequency measurements systems for medical electromagnetic imaging
Advances in signal processing platforms and microwave signal capture have allowed for new architectures of sensors to be developed. Specifically, both the ability to capture higher bandwidth and higher dynamic range as well as the associated processing hardware being capable of more calculations per second.
Harnessing these new capabilities requires a combination of hardware and software processing, and will enable the development of more and lower-cost medical electromagnetic imaging systems.
A working knowledge of signal processing and electromagnetics is necessary
-
Wideband Medical Electromagnetic Sensors
Medical Electromagnetic imaging techniques have the potential to be used in the diagnosis and monitoring of different diseases. To that end, electromagnetic sensors that operate efficiently at their near-field and within the frequency of interest should be properly designed to generate and receive utilized electromagnetic waves. This project will aim at designing compact EM sensors, using different techniques such as open-ended coaxial cables or waveguides, substrate-integrated waveguides, or any suitable near-field antenna. Those sensors should have wideband performance and thus the potential to be used as a portable medical probe or scanner.
The successful candidate should have a strong background in (a) electromagnetic radiation, and (b) microwave engineering
-
Computationally efficient electromagnetic solver using AI
With the fast progress in forming more complex electromagnetic (EM) structures with many design parameters and large demand for real-time solutions to complex EM problems in embedded devices, the need for a new EM-solving approach that can keep pace with the computational requirements has become more imminent. This project aims at developing a novel computationally efficient EM solver which is implementable on systems with limited resources using a physics-informed sparse deep neural network that solves partial differential forms of Maxwell’s equations without relying on other computational EM solver solutions. The successful candidate will specifically develop signal processing and machine learning algorithms for a real-time electromagnetic solver.
The successful candidate should have a strong background in Artificial Intelligence & a working knowledge of electromagnetics and signal analysis
-
Reconfigurable Microwave Devices using Smart Materials
This project aims at utilizing the electrodynamic properties of artificial materials in designing reconfigurable, or tunable, electromagnetic devices at the microwave frequency band, such as antennas, filters, couplers, etc. The reconfigurability might aim at controlling the center operating frequency, bandwidth, radiation pattern or direction, etc. The selected candidate will investigate the effect of different properties of those materials on the electromagnetic reconfigurability of microwave devices.
The successful candidate should have a strong background in (a) electromagnetics and microwave engineering, and (b) measurement techniques of dielectric properties of materials
-
Electromagnetic Techniques for Brain Function Monitoring
If you require a scholarship from me to do your PhD with my team, I will only support your application if you (1) have a high GPA and sound research record (published papers in decent journals, such as IEEE, IET etc), and (2) graduated from a good university. Please note that at UQ, we do not accept a research record of papers in unaccredited journals.
If you are interested, please send me an email that includes: Your GPA, publication record (published and accepted papers in only ISI-accredited journals), patents, and awards (with documented proof of those). If you do not include all that information, we will not respond to your email.
-
Tunable microwave devices (filters, power dividers, couplers, etc)
If you require a scholarship from me to do your PhD with my team, I will only support your application if you (1) have a high GPA and sound research record (published papers in decent journals, such as IEEE, IET etc), and (2) graduated from a good university. Please note that at UQ, we do not accept a research record of papers in unaccredited journals.
If you are interested, please send me an email that includes: Your GPA, publication record (published and accepted papers in only ISI accredited journals), patents and awards (with documented proof of those). If you do not include all that information, we will not respond to your email.
-
Microwave Microscopy for Medical Applications
If you require a scholarship from me to do your PhD with my team, I will only support your application if you (1) have a high GPA and sound research record (published papers in decent journals, such as IEEE, IET etc), and (2) graduated from a good university. Please note that at UQ, we do not accept a research record of papers in unaccredited journals.
If you are interested, please send me an email that includes: Your GPA, publication record (published and accepted papers in only ISI accredited journals), patents and awards (with documented proof of those). If you do not include all that information, we will not respond to your email.
-
Reconfigurable Antennas
If you require a scholarship from me to do your PhD with my team, I will only support your application if you (1) have a high GPA and sound research record (published papers in decent journals, such as IEEE, IET etc), and (2) graduated from a good university. Please note that at UQ, we do not accept a research record of papers in unaccredited journals.
If you are interested, please send me an email that includes: Your GPA, publication record (published and accepted papers in only ISI accredited journals), patents and awards (with documented proof of those). If you do not include all that information, we will not respond to your email.
-
Millimeter-Wave Techniques for Skin Cancer Detection
If you require a scholarship from me to do your PhD with my team, I will only support your application if you (1) have a high GPA and sound research record (published papers in decent journals, such as IEEE, IET etc), and (2) graduated from a good university. Please note that at UQ, we do not accept a research record of papers in unaccredited journals.
If you are interested, please send me an email that includes: Your GPA, publication record (published and accepted papers in only ISI accredited journals), patents and awards (with documented proof of those). If you do not include all that information, we will not respond to your email.
-
Contactless Head Monitor for Newborn Babies
If you require a scholarship from me to do your PhD with my team, I will only support your application if you (1) have a high GPA and sound research record (published papers in decent journals, such as IEEE, IET etc), and (2) graduated from a good university. Please note that at UQ, we do not accept a research record of papers in unaccredited journals.
If you are interested, please send me an email that includes: Your GPA, publication record (published and accepted papers in only ISI accredited journals), patents and awards (with documented proof of those). If you do not include all that information, we will not respond to your email.
-
Antenna beamforming for 5G/6G mobile communication
If you require a scholarship from me to do your PhD with my team, I will only support your application if you (1) have a high GPA and sound research record (published papers in decent journals, such as IEEE, IET etc), and (2) graduated from a good university. Please note that at UQ, we do not accept a research record of papers in unaccredited journals.
If you are interested, please send me an email that includes: Your GPA, publication record (published and accepted papers in only ISI accredited journals), patents and awards (with documented proof of those). If you do not include all that information, we will not respond to your email.
-
Multi-channel, multi-frequency measurements systems for medical electromagnetic imaging
Advances in signal processing platforms and microwave signal capture have allowed for new architectures of sensors to be developed. Specifically, both the ability to capture higher bandwidth and higher dynamic range as well as the associated processing hardware being capable of more calculations per second.
Harnessing these new capabilities requires a combination of hardware and software processing, and will enable the development of more and lower-cost medical electromagnetic imaging systems.
A working knowledge of signal processing and electromagnetics is necessary
-
Wideband Medical Electromagnetic Sensors
Medical Electromagnetic imaging techniques have the potential to be used in the diagnosis and monitoring of different diseases. To that end, electromagnetic sensors that operate efficiently at their near-field and within the frequency of interest should be properly designed to generate and receive utilized electromagnetic waves. This project will aim at designing compact EM sensors, using different techniques such as open-ended coaxial cables or waveguides, substrate-integrated waveguides, or any suitable near-field antenna. Those sensors should have wideband performance and thus the potential to be used as a portable medical probe or scanner.
The successful candidate should have a strong background in (a) electromagnetic radiation, and (b) microwave engineering
-
Computationally efficient electromagnetic solver using AI
With the fast progress in forming more complex electromagnetic (EM) structures with many design parameters and large demand for real-time solutions to complex EM problems in embedded devices, the need for a new EM-solving approach that can keep pace with the computational requirements has become more imminent. This project aims at developing a novel computationally efficient EM solver which is implementable on systems with limited resources using a physics-informed sparse deep neural network that solves partial differential forms of Maxwell’s equations without relying on other computational EM solver solutions. The successful candidate will specifically develop signal processing and machine learning algorithms for a real-time electromagnetic solver.
The successful candidate should have a strong background in Artificial Intelligence & a working knowledge of electromagnetics and signal analysis
-
Reconfigurable Microwave Devices using Smart Materials
This project aims at utilizing the electrodynamic properties of artificial materials in designing reconfigurable, or tunable, electromagnetic devices at the microwave frequency band, such as antennas, filters, couplers, etc. The reconfigurability might aim at controlling the center operating frequency, bandwidth, radiation pattern or direction, etc. The selected candidate will investigate the effect of different properties of those materials on the electromagnetic reconfigurability of microwave devices.
The successful candidate should have a strong background in (a) electromagnetics and microwave engineering, and (b) measurement techniques of dielectric properties of materials
-
Millimeter-Wave Techniques for Skin Cancer Detection
If you require a scholarship from me to do your PhD with my team, I will only support your application if you (1) have a high GPA and sound research record (published papers in decent journals, such as IEEE, IET etc), and (2) graduated from a good university. Please note that at UQ, we do not accept a research record of papers in unaccredited journals.
If you are interested, please send me an email that includes: Your GPA, publication record (published and accepted papers in only ISI accredited journals), patents and awards (with documented proof of those). If you do not include all that information, we will not respond to your email.
-
Electromagnetic Techniques for Brain Function Monitoring
If you require a scholarship from me to do your PhD with my team, I will only support your application if you (1) have a high GPA and sound research record (published papers in decent journals, such as IEEE, IET etc), and (2) graduated from a good university. Please note that at UQ, we do not accept a research record of papers in unaccredited journals.
If you are interested, please send me an email that includes: Your GPA, publication record (published and accepted papers in only ISI-accredited journals), patents, and awards (with documented proof of those). If you do not include all that information, we will not respond to your email.
-
Tunable microwave devices (filters, power dividers, couplers, etc)
If you require a scholarship from me to do your PhD with my team, I will only support your application if you (1) have a high GPA and sound research record (published papers in decent journals, such as IEEE, IET etc), and (2) graduated from a good university. Please note that at UQ, we do not accept a research record of papers in unaccredited journals.
If you are interested, please send me an email that includes: Your GPA, publication record (published and accepted papers in only ISI accredited journals), patents and awards (with documented proof of those). If you do not include all that information, we will not respond to your email.
-
Microwave Microscopy for Medical Applications
If you require a scholarship from me to do your PhD with my team, I will only support your application if you (1) have a high GPA and sound research record (published papers in decent journals, such as IEEE, IET etc), and (2) graduated from a good university. Please note that at UQ, we do not accept a research record of papers in unaccredited journals.
If you are interested, please send me an email that includes: Your GPA, publication record (published and accepted papers in only ISI accredited journals), patents and awards (with documented proof of those). If you do not include all that information, we will not respond to your email.
-
Reconfigurable Antennas
If you require a scholarship from me to do your PhD with my team, I will only support your application if you (1) have a high GPA and sound research record (published papers in decent journals, such as IEEE, IET etc), and (2) graduated from a good university. Please note that at UQ, we do not accept a research record of papers in unaccredited journals.
If you are interested, please send me an email that includes: Your GPA, publication record (published and accepted papers in only ISI accredited journals), patents and awards (with documented proof of those). If you do not include all that information, we will not respond to your email.
-
Contactless Head Monitor for Newborn Babies
If you require a scholarship from me to do your PhD with my team, I will only support your application if you (1) have a high GPA and sound research record (published papers in decent journals, such as IEEE, IET etc), and (2) graduated from a good university. Please note that at UQ, we do not accept a research record of papers in unaccredited journals.
If you are interested, please send me an email that includes: Your GPA, publication record (published and accepted papers in only ISI accredited journals), patents and awards (with documented proof of those). If you do not include all that information, we will not respond to your email.
-
Antenna beamforming for 5G/6G mobile communication
If you require a scholarship from me to do your PhD with my team, I will only support your application if you (1) have a high GPA and sound research record (published papers in decent journals, such as IEEE, IET etc), and (2) graduated from a good university. Please note that at UQ, we do not accept a research record of papers in unaccredited journals.
If you are interested, please send me an email that includes: Your GPA, publication record (published and accepted papers in only ISI accredited journals), patents and awards (with documented proof of those). If you do not include all that information, we will not respond to your email.
-
Electromagnetic Solver Using Physics - Guided Deep Neural Network
This project aims to develop a physics-guided, data-driven method for solving complex electromagnetic problems efficiently. The focus of this project will be on medical microwave imaging.
Supervision history
Current supervision
-
Doctor Philosophy
Universal Deep Learning Methods for Reliable Electromagnetic Imaging and Detection in Inhomogeneous Media
Principal Advisor
Other advisors: Dr Lei Guo, Dr Alina Bialkowski
-
Doctor Philosophy
Compact Wideband Antennas for Enhanced Medical Electromagnetic Torso Imaging
Principal Advisor
Other advisors: Dr Kamel Sultan, Dr Azin Janani
-
Doctor Philosophy
Reconfigurable Antennas for Medical Application
Principal Advisor
Other advisors: Dr Azin Janani
-
Master Philosophy
Computationally Efficient Electromagnetic Solver for Medical Imaging
Principal Advisor
Other advisors: Dr Lei Guo
-
Doctor Philosophy
WIDEBAND, COMPACT NEAR FIELD ANTENNAS FOR MILLIMETER WAVE IMAGING FOR MEDICAL APPLICATIONS
Principal Advisor
Other advisors: Dr Lei Guo
-
Doctor Philosophy
Universal Deep Learning for Reliable Electromagnetic Imaging and Detection in Inhomogeneous Media
Principal Advisor
Other advisors: Dr Lei Guo, Dr Alina Bialkowski
-
Doctor Philosophy
Reconfigurable Antennas for Millimeter Wave Communications
Principal Advisor
Other advisors: Professor Christophe Fumeaux, Dr Kamel Sultan
-
Doctor Philosophy
Compact Wideband Antennas for Enhanced Medical Electromagnetic Torso Imaging
Principal Advisor
Other advisors: Dr Kamel Sultan, Dr Azin Janani
-
Doctor Philosophy
Ground terminal for lower Earth orbit satellite communications
Principal Advisor
Other advisors: Associate Professor Konstanty Bialkowski, Professor Christophe Fumeaux
-
Master Philosophy
Developing Signal Processing Techniques for Electromagnetic Medical Imaging Using Machine Learning
Principal Advisor
Other advisors: Associate Professor Konstanty Bialkowski, Dr Lei Guo
-
Doctor Philosophy
Design of Tunable Microwave Devices
Principal Advisor
Other advisors: Dr Lei Guo, Professor Christophe Fumeaux
-
Doctor Philosophy
Reconfigurable microwave devices using smart materials for medical applications
Principal Advisor
Other advisors: Professor Christophe Fumeaux, Dr Kamel Sultan
-
Doctor Philosophy
Universal Deep Learning for Reliable Electromagnetic Imaging and Detection in Inhomogeneous Media
Principal Advisor
Other advisors: Dr Lei Guo, Dr Alina Bialkowski
-
Doctor Philosophy
Monitoring Anomalies In The Human Head Using Signal Processing and Imaging Techniques
Associate Advisor
Other advisors: Associate Professor Konstanty Bialkowski
-
Doctor Philosophy
Development of advanced multi-port beam-steerable antennas
Associate Advisor
Other advisors: Dr Sasan Ahdi Rezaeieh, Professor Christophe Fumeaux
-
Doctor Philosophy
Monitoring Anomalies In The Human Head Using Signal Processing and Imaging Techniques
Associate Advisor
Other advisors: Associate Professor Konstanty Bialkowski
Completed supervision
-
2025
Doctor Philosophy
Compact Wideband Antennas for Enhanced Medical Electromagnetic Torso Imaging
Principal Advisor
Other advisors: Dr Kamel Sultan, Dr Azin Janani
-
2022
Doctor Philosophy
Dielectric spectroscopy and significance of blood analytes in the microwave and millimetre-wave bands
Principal Advisor
Other advisors: Emeritus Professor Stephen Mahler
-
2022
Doctor Philosophy
Data-driven Approaches for Biomedical Electromagnetic Imaging
Principal Advisor
Other advisors: Dr Lei Guo
-
2022
Doctor Philosophy
Transcranial Magnetic Stimulation System for Deep Brain Stimulation
Principal Advisor
-
2021
Doctor Philosophy
Design and Characterization of Broadband EM Wave Absorbers for Low-microwave Frequency Applications
Principal Advisor
-
2021
Doctor Philosophy
Characterization and Detection of Skin Malignancies Using Microwave Techniques
Principal Advisor
Other advisors: Dr Alina Bialkowski
-
2021
Doctor Philosophy
Theory of Parallel Coupled Resonators and its application in designing Compact Multi-Mode Filters and Antennas
Principal Advisor
Other advisors: Associate Professor Konstanty Bialkowski
-
2021
Doctor Philosophy
Reconfigurable Antennas for Electromagnetic Torso Imaging
Principal Advisor
Other advisors: Associate Professor Konstanty Bialkowski, Dr Sasan Ahdi Rezaeieh
-
2021
Doctor Philosophy
Multi-Functional Antenna Structures for 4G/5G Wireless Communication Devices
Principal Advisor
Other advisors: Associate Professor Konstanty Bialkowski
-
2021
Doctor Philosophy
Wearable Electromagnetic Head Imaging System
Principal Advisor
Other advisors: Associate Professor Konstanty Bialkowski
-
2020
Doctor Philosophy
Compact Implantable Antennas for Cerebrospinal Fluid Monitoring
Principal Advisor
Other advisors: Associate Professor Konstanty Bialkowski
-
2020
Doctor Philosophy
Reconfigurable and MIMO Antenna Systems for Mobile Communications
Principal Advisor
Other advisors: Associate Professor Konstanty Bialkowski
-
2019
Doctor Philosophy
Reconfigurable Antennas with Single and Multiple Reconfigurability Functions for Wireless Communications
Principal Advisor
-
2019
Doctor Philosophy
Mathematical Models for Efficient Medical Electromagnetic Tomography
Principal Advisor
Other advisors: Associate Professor Konstanty Bialkowski
-
2018
Doctor Philosophy
Planar Microwave Devices for Wideband Microwave Medical Diagnostic and Therapeutic Systems
Principal Advisor
-
2018
Master Philosophy
Improving Wireless Communications in Underground Mines Using Reconfigurable Antennas
Principal Advisor
Other advisors: Associate Professor Konstanty Bialkowski
-
2018
Doctor Philosophy
Frequency-Based Microwave Medical Imaging Techniques
Principal Advisor
Other advisors: Emeritus Professor Stuart Crozier
-
2017
Doctor Philosophy
Processing and imaging techniques for microwave-based head imaging
Principal Advisor
-
2017
Doctor Philosophy
Multi-functional and Tunable Microwave Devices and Sub-systems for Wideband Applications
Principal Advisor
Other advisors: Associate Professor Konstanty Bialkowski
-
2016
Doctor Philosophy
Wideband Microwave Imaging System for Brain Injury Diagnosis
Principal Advisor
-
2016
Doctor Philosophy
Design of Wideband Microwave Frontend for Microwave-Based Imaging Systems
Principal Advisor
Other advisors: Associate Professor Konstanty Bialkowski
-
2016
Doctor Philosophy
Wideband microwave imaging systems for the diagnosis of fluid accumulation in the human torso
Principal Advisor
Other advisors: Associate Professor Konstanty Bialkowski
-
2015
Doctor Philosophy
Design and Implementation of Microwave Imaging systems for Medical Applications
Principal Advisor
Other advisors: Professor Aleksandar Rakic, Associate Professor Konstanty Bialkowski
-
2013
Doctor Philosophy
Capability Improvement of Reflectarray Antennas: Bandwidth Enhancement and Reconfigurable Design
Principal Advisor
-
2013
Doctor Philosophy
Microwave Devices and Techniques for Breast Cancer Detection Systems
Principal Advisor
Other advisors: Professor Aleksandar Rakic
-
-
2012
Doctor Philosophy
Design of Compact Multiband Antennas for Portable Wireless Transceivers
Principal Advisor
-
2012
Doctor Philosophy
Design of Ultra-Wideband Microwave Imaging System for Breast Cancer Detection and Its Assessment Using Heterogeneous Breast Phantoms
Principal Advisor
-
Doctor Philosophy
Design and Implementation of Electromagnetic Knee Imaging Systems
Principal Advisor
-
2023
Doctor Philosophy
Intelligent Sensor-Fused System for Traffic Monitoring
Associate Advisor
Other advisors: Associate Professor Konstanty Bialkowski
-
2023
Doctor Philosophy
Biomedical Microwave Neuroimaging Transceiver Systems and Functional Sensing
Associate Advisor
Other advisors: Associate Professor Konstanty Bialkowski
-
2022
Doctor Philosophy
Microwave Sensors for Sugarcane Analysis
Associate Advisor
Other advisors: Associate Professor Konstanty Bialkowski
-
2022
Doctor Philosophy
Electromagnetic Interference Analysis and Modelling in Motor Drive Systems
Associate Advisor
Other advisors: Associate Professor Konstanty Bialkowski
-
2016
Doctor Philosophy
Focusing Microwave Hyperthermia in Realistic Environment for Breast Cancer Treatment
Associate Advisor
Other advisors: Emeritus Professor Stuart Crozier
-
-
2010
Doctor Philosophy
Multi-Port Reflectometer in Multilayer Microstrip-Slot Technology for Ultra Wideband Applications
Associate Advisor
-
2008
Master Philosophy
Performance Optimization of MIMO Systems Under the Presence of Antenna Mutual Coupling Effect
Associate Advisor
Media
Enquiries
Contact Professor Amin Abbosh directly for media enquiries about:
- Antennas
- Microwave Medical Imaging
- Microwave Passive Devices
- Telecommunications
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