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http://dx.doi.org/10.5140/JASS.2007.24.4.397

DESIGN AND FABRICATION OF S-BAND DIPLEXER FOR LEO TT&C APPLICATION  

Ahn, Sang-Il (Ground System Development Dept., Korea Aerospace Research Institute)
Park, Dong-Chul (Dept. of Radio Science and Engineering, Chungnam National University)
Publication Information
Journal of Astronomy and Space Sciences / v.24, no.4, 2007 , pp. 397-408 More about this Journal
Abstract
Diplexer is one of core devices needed to communicate with satellite using single ground antenna by separating uplink and downlink signal. This paper presents the design of the S-band diplexer for LEO TT&C application, especially for KOMPSAT (KOrea Multi-Purpose SATellite). To cope with requirements such as high handling power, low insertion loss, air-cavity resonator with high quality factor was considered as one of design drivers. Design was started with predicting unloaded Q and equivalent circuit from the structure of air-cavity resonator. For the convenience of adjustment, the coupling factor placed between resonators was estimated from COTSEM (Electro-Magnetic) simulator, EESOF $ADS^{TM}$, and expressed with 2-order polynomial regression. To improve the isolation between transmitting part (Tx) and receiving part (Rx), the inductive and capacitive attenuation poles were inserted between $4^{th}\;and\;6^{th}$ resonator respectively. The fabricated diplexer consists of two bandpass filters and each filter has eight resonants. From the measurement, it was shown that major requirements such as 0.5dB of insertion loss, 20dB of return loss and 100dB of isolation were fully satisfied within passband.
Keywords
diplexer; KOMPSAT; TT&C; operation;
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  • Reference
1 Puglia, K. V. 2000, Microwave Journal, 43(12), 22
2 Caspi, S. & Adelman, J. 1988, IEEE Transactions on Microwave Theory and Techniques, 36, 759   DOI   ScienceOn
3 Matthaei, G. L., Young, L., & Jones, E. M. T. 1964, Microwave Filters, Impedance-matching Networks and Coupling Structures (New York: McGraw-Hill)
4 Thomas, B. J. 2003, IEEE Transactions on Microwave Theory and Techniques, 51, 1368   DOI   ScienceOn