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Update on Wednesday, 24 January 2024: Prof. Arwa Zabian becomes Chairperson of MIC-Wireless 2024.
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  • EngiTek
  • GC-BEN 2011
  • 24.Cnf-188
EngiTek Congresses with Published Papers
EngiTek 2020, Irbid
8
Papers Published at GC-BEN 2011
All 9 Papers
IDAuthors and TitlePages
24.Cnf-85 Ms. Rania Bakeir
IPTV technology applying in the Jordanian market technical and strategic study
1-6
24.Cnf-161 Dr. Abdul_bary Suleiman
Virtual instrumentation clinical PC-based pure-tone audiogram
7-10
24.Cnf-177 Dr. Ahmad Hassanat
Automatic lip reading for security
11-16
24.Cnf-187 Dr. Dawei Zhou
Dr. Fuguo Zhu
Dr. Steven Gao
Prof. Raed Abd-Alhameed
Prof. Jiadong Xu
Dr. Yousef Dama
Study and analysis of compact planar ultra wideband antenna with band-notched characteristics
17-20
24.Cnf-188 Dr. Chan Hwang See
Prof. Raed Abd-Alhameed
Dr. Yousef Dama
Prof. Peter Excell
Proposed circuit model for calibration of nonlinear responses in biological media exposed to RF energy
21-24
24.Cnf-191 Prof. Mazhar Basyouni Tayel
Mr. Hani Saad Alhakami
A High Directivity-WideBand Metamaterial Multisection Directional Coupler
25-30
24.Cnf-192 Prof. Mazhar Basyouni Tayel
Mr. Hani Saad Alhakami
Optimaization and Design a WideBand Multisection Quadrature Coupler for 2.5GHz
31-36
24.Cnf-193 Mr. Ibrahim M. Ibrahim
Dr. Manal Abdel-Wahed
Mammography mass detection: visual versus statistical features selection
37-42
24.Cnf-197 Prof. Mazhar Basyouni Tayel
Mr. Hani Saad Alhakami
Modeling and compact a wideband multisection quadrature coupler for 900MHz
43-49
24.Cnf-188 Paper View Page
Title Proposed circuit model for calibration of nonlinear responses in biological media exposed to RF energy
Authors Dr. Chan Hwang See, University of Bradford, Bradford, UK
Prof. Raed Abd-Alhameed, University of Bradford, Bradford, UK
Dr. Yousef Dama, An-Najah National University, Nablus, Palestine
Prof. Peter Excell, Glyndwr University, Wrexham, UK
Abstract An efficient way to test the unsymmetrical nonlinear response of biological tissue samples exposed to a 0.9GHz signal is to observe the second harmonic at 1.8GHz in a cavity resonant at the two frequencies. An electrical circuit model is proposed to calibrate the performance of nonlinear RF energy conversion inside a high quality factor resonant cavity with a known nonlinear loading device. The first and second harmonic response of the cavity due to loading with the lossy material is also demonstrated. The results from the proposed mathematical model give a good indication of the input power required to detect the weak second harmonic signal prior to performing the measurement. Hence, this proposed mathematical model will assist in determining the level of the second harmonic signal in its detector: this can be adjusted by supplying the specific input power required.
Track BME: Biomedical Engineering
Conference 1st Mosharaka International Conference on Biomedical Engineering, Electronics and Nanotechnology (MIC-BEN 2011)
Congress 2011 Global Congress on Biomedical Engineering, Electronics and Nanotechnology (GC-BEN 2011), 9-11 September 2011, Amman, Jordan
Pages 21-24
Topics Biomedical Imaging Systems
Wireless Bio-Instrumentation
ISSN 2227-331X
DOI
BibTeX @inproceedings{188BEN2011,
title={Proposed circuit model for calibration of nonlinear responses in biological media exposed to RF energy},
author={Chan Hwang See, and Raed Abd-Alhameed, and Yousef Dama, and Peter Excell},
booktitle={2011 Global Congress on Biomedical Engineering, Electronics and Nanotechnology (GC-BEN 2011)},
year={2011},
pages={21-24},
doi={}},
organization={Mosharaka for Research and Studies} }
Paper Views 76 Paper Views Rank 97/524
Paper Downloads 23 Paper Downloads Rank 327/524
GC-BEN 2011 Visits: 13384||MIC-BEN 2011 Visits: 10793||BME Track Visits: 4359