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DİKDÖRTGEN MİKROŞERİT ANTENLERİN GİRİŞ EMPEDANSI İÇİN BASİT BİR MODEL

SIMPLE MODEL FOR THE INPUT IMPEDANCE OF RECTANGULAR MICROSTRIP ANTENNA

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Abstract (2. Language): 
A very simple model for the input impedance of a coax-fed rectangular microstrip patch antenna is presented. It is based on the cavity model and the equivalent resonant circuits. The theoretical input impedance results obtained from this model are in good agreement with the experimental results available in the literature. This model is well suited for computer-aided design (CAD).
Abstract (Original Language): 
Koaksiyel-besleme dikdörtgen mikro şerit yama antenin giriş empedansı için çok basit bir model sunulmuştur. Bu modelin temeli, rezonatör modeline ve eşdeğer rezonans devresine dayanmaktadır. Bu modelden elde edilen teorik giriş empedansı sonuçları, literatürdeki mevcut deneysel sonuçlarla uyumluluk içindedir. Bu model, bilgisayar yardımı ile tasarım için çok uygundur.
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REFERENCES

References: 

Abboud, F., Damiano, J. P., and Papiernik, A. 1988. Simple Model for the Input Impedance of Coax-fed Rectangular Microstrip Patch Antenna for CAD, IEE Proceedings, 135 (5), 323-326.
Aksun, M. I., Chuang, S. L., and Lo, Y. T. 1990.
On Slot-Coupled Microstrip Antennas and their Aplications to cp Operation-Theory and Experiment, IEEE Trans. Antennas Propagat., AP-38, 1224¬1230.
Bahl, I. J., and Bhartia, P. 1980. Microstrip Antennas, Dedham, MA, Artech House.
Bhartia, P., Rao, K. V. S. and Tomar, R. S. (Eds.) 1991. Milimeter-Wave Microstrip and Printed Circuit Antennas, Artech House, Canton, MA.
Carver, K. R., and Coffey, E. L. 1979. Theoretical Investigation of the Microstrip Antenna, Technical Report 00929, Physical Science Laboratory, New Mexico State University, Las Cruces (New Mexico). January.
Carver, K. R., and Mink, J. W. 1981. Microstrip Antenna Technology, IEEE Trans. Antennas
Propagat., AP-29, 2-24.
Damiano, J. P. and Papiernik, A. 1993. A simple and Accurate Model for the Resonant Frequency and the Input Impedance of Printed Antennas, Int. J. Microwave Milimeter-Wave Compt. Aided Eng., 3 (4), 350-361.
Deshpande, M. D., and Bailey, M. C. 1982. Input Impedance of Microstrip Antennas, IEEE Trans. Antennas Propagat., AP-30, 645-650.
Gupta, K. C., and Benalla, A. (Eds.) 1988.
Microstrip Antenna Design , Artech House, Canton, MA.
Güney,
K
. 1993. Space-Wave Efficiency of Rectangular Microstrip Antennas, Int. J. of Electronics, vol. 74, 765-769.
Güney,
K
. 1993a. Resonant Frequency of a Triangular Microstrip Antennas, Microwave and Optical Technology Letters, (6), 555-557.
Güney,
K
. 1994. Comments on 'On the Resonant Frequency of Microstrip Antennas', IEEE Trans. Antennas Propagat., AP-42, 1363-1365.
Mühendislik Bilimleri Dergisi 1998 4 (3)
737
Journal of Engineering Sciences 1998 4 (3) 733-738
Simple Model for the Input Impedance of Rectangular Microstrip Antenna, C. Yıldız, K. Güney
Güney, K. 1994a. Resonant Frequency of a Tunable Rectangular Microstrip Patch Antenna, Microwave
and Optical Technology Letters, (7), 581-585. Güney, K. 1994b. A New Edge Extension Expression for the Resonant Frequency of Electrically Thick Rectangular Microstrip Antennas,
Int. J. of Electronics, 75 (4), 767-770.
Güney,
K
. 1994c. Radiation Quality Factor and Resonant Resistance of Rectangular Microstrip Antennas, Microwave and Optical Technology
Letters, 7, 427-430.
Güney,
K
. 1994d. Bandwidth of a Resonant Rectangular Microstrip Antenna, Microwave and Optical Technology Letters, 7, 521-524.
Güney,
K
. 1995. Closed-Form Expression for Radiation Resistance of a Resonant Rectangular Microstrip Patch Antenna, Int. J. of Microwave and Milimeter-Wave Computer -Aided Engineering,
Vol. 5, 31-39.
Güney,
K
. 1995a. Space-Wave Efficiency of Electrically Thick Circular Microstrip Antennas,
Int. J. of Electronics, 78, 571-579.
Hammerstad, E., and Jensen, O. 1980. "Accurate Models for Microstrip Computer Aided Design" IEEE MTT Int. Microwave Symp. Digest,
Washington, D. C., 407-409.
Hirasawa, K., and Haneishi, M. 1992. Analysis, Design, and Measurements of Small and Low-Profile Antennas, Artech House, Canton, MA.
James, J. R., and Hall, P.S. (Eds.) 1989. Handbook of Microstrip Antennas, IEE Electromagnetic Wave Series, No. 28, Vol. 1 and 2, London, Peter Peregrinus Ltd.
Lo, Y. T., Wright, S. M., and Davidovitz, M. 1989. Microstrip Antennas, in Chang, K., (Ed.), Handbook of Microwave and Optical Components, John Wiley
and Sons, New York, 764-889.
Lo, Y. T., Harrison, D. D., Solomon, D., Deschamps, G. A., and Ore, F. R., 1977, Study of microstrip antennas, microstrip phased arrays and microstrip feed networks, RADC Technical Report
TR-77-406.
Lo, Y.T., Solomon, D., and Richards, W. F. 1979.
Theory and Experiment of Microstrip Antennas, IEEE Trans. Antennas Propagat., AP-27, 137-145. 21st Oct.
Pozar, D. M., and Schaubert, D. H. (Eds.) 1995.
Microstrip Antennas-the Analysis and Design of Microstrip Antennas and Arrays, IEEE Press, New York.
Pozar, D. M. 1982. Input Impedance and Mutual Coupling of Rectangular Microstrip Antennas, IEEE Trans. Antennas Propagat., AP-30, pp. 1191-1196.
Pozar, D. M. 1985. Antenna Design Using Personal Computers, Dedham, MA, Artech House, 124.
Richards, W. F., Lo, Y. T., and Harrison, D. D. 1981. An Improved Theory for Microstrip Antennas and Applications, IEEE Trans. Antennas Propagat.,
AP-29, 38-46.
Richards, W.F. 1988. Microstrip Antennas, in Lo, Y. T., and Lee, S. W., (Eds.), Antenna Handbook , Van Nostrand Reinhold, New York.
Sağıroğlu, Ş.
an
d Güney, K. 1997. Calculation of Resonant Frequency for an Equilateral Triangular Microstrip Antenna Using Artificial Neural Networks, Microwave and Optical Technology Letters, Vol. 14 (2), 89-93.
Zürcher,
J
. F. and Gardiol, F. E. 1995. Broadband Patch Antennas, Artech House.

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