Have a personal or library account? Click to login

An Application of Artificial Neural Network to Compute the Resonant Frequency of E–Shaped Compact Microstrip Antennas

Open Access
|Oct 2013

References

  1. [1] AKDAGLI, A.-TOKTAS, A. : A Novel Expression in Calculating Resonant Frequency of H-Shaped Compact Microstrip Antennas Obtained by using Artificial Bee Colony Algorithm, Journal of Electromagnetic Waves and Applications 24 (2010), 2049-2061.10.1163/156939310793675989
  2. [2] BHATTACHARYYA, A. K.,-GARG, R. : Generalized Transmission- Line Model for Microstrip Patches, IEE Proceedings-H Microwaves Antennas and Propagation 132 (1985), 93-98.10.1049/ip-h-2.1985.0019
  3. [3] BISHOP, C. M. : Neural Networks for Pattern Recognition, Oxford University Press, London, 1995.10.1201/9781420050646.ptb6
  4. [4] DADGARNIA, A.-HEIDARI, A. A. : A Fast Systematic Approach for Microstrip Antenna Design and Optimization using ANFIS and GA jour Journal of Electromagnetic Waves and Applications.
  5. [5] DESHMUKH, A. A.-KUMAR, G. : Formulation of Resonant Frequency for Compact Rectangular Microstrip Antennas, Microwave and Optical Technology Letters 49 (2007), 498-501.10.1002/mop.22161
  6. [6] DEVELI, I. : Application of Multilayer Perceptron Networks to Laser Diode Nonlinearity Determination for Radio-Overfibre Mobile Communications, Microwave and Optical Technology Letters 42 (2004), 425-427.10.1002/mop.20325
  7. [7] DUBOST, G.-RABBAA, A. : Analysis of a Slot Microstrip Antenna, IEEE Transactions on Antennas and Propagation 34 (1986), 155-163.10.1109/TAP.1986.1143791
  8. [8] GUNEY, K.-SARIKAYA, N. : Input Resistance Calculation for Circular Microstrip Antennas using Adaptive Neuro-Fuzzy Inference System, International Journal of Infrared and Millimeter Waves 25 (2004), 703-716.10.1023/B:IJIM.0000020756.48454.31
  9. [9] HAGAN, M. T.-MENHAJ, M. B. : Training Feedforward Networks with the Marquardt Algorithm, IEEE Transactions on Neural Networks 5, (1994), 989-993.10.1109/72.32969718267874
  10. [10] HARRINGTON, R. F. : Field Computation by Moment Methods, IEEE Press Series on Electromagnetic Wave Theory, Piscataway, 1993.10.1109/9780470544631
  11. [11] HAYKIN, S. : Neural Networks: a Comprehensive Foundation, Macmillan College Publishing Company, New York, 1994.
  12. [12] IE3DTM , version 14, Menthor Graphics Corporation, Boeckman Road Wilsonville, OR 97070.
  13. [13] JANG, J. S. R. : Self-Learning Fuzzy Controllers based on Temporal Back Propagation, IEEE Transactions on Neural Networks 3 (1992), 714-723.10.1109/72.15906018276470
  14. [14] JANG, J. S. R. : ANFIS: Adaptive-Network-Based Fuzzy Inference System, IEEE Transactions on Systems Man and Cybernetics 23 (1993), 665-685.10.1109/21.256541
  15. [15] KAYABASI, A.-BICER, M. B.-AKDAGLI, A.-TOKTAS, A. : Computing Resonant Frequency of H-Shaped Compact Microstrip Antennas Operating at UHF Band by using Artificial Neural Networks, Journal of the Faculty of Engineering and Architecture of Gazi University 26 (2011), 833-840.
  16. [16] KUMAR, G.-RAY, K. P. : Broadband Microstrip Antennas, Artech House, Boston, 2003.
  17. [17] MALATHI, P.-KUMAR, R. : On the Design of Multilayer Circular Microstrip Antenna using Artificial Neural Network, International Journal of Recent Trends in Engineering 2 (2009), 70-74.
  18. [18] PAN, S. C.-WONG, K. L. : Dual-Frequency Triangular Microstrip Antenna with a Shorting Pin, IEEE Transactions on Antennas and Propagation 45 (1997), 1889-1891.10.1109/8.650213
  19. [19] RICHARDS, W. F.-LO, Y. T.-HARRISSON, D. D. : An Improved Theory for Microstrip Antennas and Applications, IEEE Transactions on Antennas and Propagation 29 (1981), 38-46.10.1109/TAP.1981.1142524
  20. [20] SAGIROGLU, S.-GUNEY, K. : Calculation of Resonant Frequency for an Equilateral Triangular Microstrip Antenna with the use of Artificial Neural Networks, Microwave and Optical Technology Letters 14 (1997), 89-93.10.1002/(SICI)1098-2760(19970205)14:2<;89::AID-MOP5>3.0.CO;2-H
  21. [21] SAINATI, R. A. : CAD of Microstrip Antennas for Wireless Applications, Artech House, Norwood, 1996.
  22. [22] TAFLOVE, A. : Computational Electrodynamics: The Finite- Difference Time Domain Methodpubladdr Bostonpubl Artech House, 1995.
  23. [23] THAKARE, V. V.-SINGHAL, P. : Microstrip Antenna Design using Artificial Neural Networks, International Journal of RF and Microwave Computer-Aided Engineering 20 (2010), 76-86.10.1002/mmce.20414
  24. [24] TOKTAS, A.-BICER, M. B.-AKDAGLI, A.-KAYABASI, A. : Simple Formulas for Calculating Resonant Frequencies of C and H Shaped Compact Microstrip Antennas Obtained by using Artificial Bee Colony Algorithm, Journal of Electromagnetic Waves and Applications 25 (2011), 1718-1729.10.1163/156939311797164855
  25. [25] WONG, K. L. : Compact and Broadband Microstrip Antennas, John Wiley & Sons, New York, 2002.10.1002/0471221112
  26. [26] YANG, F.-ZHANG, X. X.-YE, X. N.-RAHMAT-SAMII, Y. : Wide-Band E-Shaped Patch Antennas for Wireless Communications, IEEE Transactions on Antennas and Propagation 49 (2001), 1094-1100.10.1109/8.933489
  27. [27] ZHANG, Q.-FUKUOKA, Y.-ITOH, T. : Analysis of a Suspended Patch Antenna Excited by an Electromagnetically Coupled Inverted Microstrip Feed, IEEE Transactions on Antennas and Propagation 33 (1985), 895-899.10.1109/TAP.1985.1143670
DOI: https://doi.org/10.2478/jee-2013-0046 | Journal eISSN: 1339-309X | Journal ISSN: 1335-3632
Language: English
Page range: 317 - 322
Published on: Oct 15, 2013
Published by: Slovak University of Technology in Bratislava
In partnership with: Paradigm Publishing Services
Publication frequency: 6 issues per year

© 2013 Ali Akdagli, Abdurrahim Toktas, Ahmet Kayabasi, Ibrahim Develi, published by Slovak University of Technology in Bratislava
This work is licensed under the Creative Commons License.