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  • GC-CSP 2012
  • 28.Cnf-303
BEN Congresses with Published Papers
GC-BEN 2011, Amman
9
Papers Published at GC-CSP 2012
All 10 Papers
IDAuthors and TitlePages
28.Cnf-303 Mr. Muhammad Yameen Sandhu
Mr. Sharjeel Afridi
Mr. Yahya Junejo
Designing of high Q dielectric resonator filter by 3-D finite element method (FEM)
1-6
28.Cnf-309 Dr. Shebel Alsabbah
Evaluation of Self-Tuned Fuzzy-PID Controller over Titration Process
7-12
28.Cnf-310 Prof. Engin Avci
Radar Target Recognition Based on Wavelet - ELM
13-18
28.Cnf-315 Mr. João Coucelo
Prof. Rui Marinheiro
Prof. Joao Silva
Prof. Jose Moura
WLAN-UMTS Integration to Optimize MBMS Provision
19-23
28.Cnf-316 Mr. Alberto Pineda
Mr. Luis Zabala
Mr. Armando Ferro
Network Architecture to Automatically Test Traffic Monitoring Systems
24-29
28.Cnf-317 Mr. Eduard Bonada
Dolors Sala
Characterizing the convergence time of RSTP
30-35
28.Cnf-318 Mr. João Rendeiro
Prof. Rui Marinheiro
Prof. Jose Moura
Prof. Joao Silva
An Adaptive Management Proposal for Optimizing the Performance of A Virtualized Computing Environment
36-40
28.Cnf-319

GS Citations

Prof. Jose Moura
Prof. Joao Silva
Prof. Rui Marinheiro
A brokerage system for enhancing wireless access
41-46
28.Cnf-330 Mr. Amirreza Naderipour
Prof. Abdullah Asuhaimi Mohd Zin
The Peruse of Designing a Hybrid Filter to Omission Harmonics and Reactive Power Improvement in Distributed Generation systems
47-52
28.Cnf-342 Dr. Kamal R. Al-Rawi
Reduction of the State Space for the Travelling Salesman Problem (TSP) Through Elimination of Unpaved Edges
53-57
28.Cnf-303 Paper View Page
Title Designing of high Q dielectric resonator filter by 3-D finite element method (FEM)
Authors Mr. Muhammad Yameen Sandhu, University of Leeds, Leeds, UK
Mr. Sharjeel Afridi, University of Leeds, Leeds, UK
Mr. Yahya Junejo, University of Leeds, Leeds, UK
Abstract Emerging wireless, space and satellite communication links require light weight, low loss, temperature stable and inexpensive communication devices. Microwave filters are the key element of any communication system or microwave link. Microwave filters are usually implemented by using waveguide, coaxial, microstrip or lumped element resonators. Only dielectric resonator filters provide best combination of volume versus insertion loss of filter. Dielectric resonator filters offer very high Q factors to provide lowest pass band insertion loss and higher selectivity with compactness and minimal power requirements. And satisfy vital demand of emerging space communication systems and cellular industry by offering very high-quality factor due to their inherent low loss material. This paper describes basic steps to design dielectric resonator filter with the help of a 3D finite-element method (FEM) simulation tool, Ansoft HFSS (High Frequency Structure Simulator). Dielectric disks are used to tune the filter response within a limited range.
Track CNA: Communication Networks and Applications
Conference 2nd Mosharaka International Conference on Communications and Signal Processing (MIC-CSP 2012)
Congress 2012 Global Congress on Communications and Signal Processing (GC-CSP 2012), 6-8 April 2012, Barcelona, Spain
Pages 1-6
Topics Finite Element Analysis
Microstrip Resonators
ISSN 2227-331X
DOI
BibTeX @inproceedings{303CSP2012,
title={Designing of high Q dielectric resonator filter by 3-D finite element method (FEM)},
author={Muhammad Yameen Sandhu, and Sharjeel Afridi, and Yahya Junejo},
booktitle={2012 Global Congress on Communications and Signal Processing (GC-CSP 2012)},
year={2012},
pages={1-6},
doi={}},
organization={Mosharaka for Research and Studies} }
Paper Views 72 Paper Views Rank 113/524
Paper Downloads 32 Paper Downloads Rank 112/524
GC-CSP 2012 Visits: 11809||MIC-CSP 2012 Visits: 9603||CNA Track Visits: 4410