DOI QR코드

DOI QR Code

Development of Combinational 2-Way Isohybrid for GSM1900 Base Station

GSM1900 기지국용 일체형 2-Way Isohybrid의 개발

  • 박노준 (원광대학교 공과대학 전기전자 및 정보공학부) ;
  • 정승우 (원광대학교 공과대학 전기전자 및 정보공학부) ;
  • 강영진 (원광대학교 공과대학 전기전자 및 정보공학부) ;
  • 최우성 (원광대학교 공과대학 전기전자 및 정보공학부)
  • Published : 2007.08.31

Abstract

Total efficiency of transmitter system was improved by developing combinational 2-Way Isohybrid for GSM1900 base station in this paper. The size of product was decreased and the characteristics were stabilized. The isohybrid transmitter combiner of chip coupler type and hybrid coupler type were designed and fabricated. Insertion loss for chip coupler type isohybrid was $3.17\;dB{\sim}3.47\;dB$. On the other hand, insertion loss for hybrid coupler type was $3.17\;dB{\sim}3.42\;dB$. Isolations between ANT and port were $24.23\;dB{\sim}29.98\;dB$ in case of chip coupler type Isohybrid and were $26.28\;dB{\sim}36.91\;dB$ in case of hybrid coupler type, respectively.

본 연구에서는 GSM1900 주파수 대역을 위한 이동통신 기지국용 Isohybrid를 개발함으로써 시스템의 효율을 증가시켰으며 제품의 소형화 및 안정된 특성을 구현하였다. 결과로서 각각 Chip coupler type과 Hybrid coupler type의 Isohybrid transmitter combiner를 설계 및 제작하였고 Insertion loss는 Chip coupler type Isohybrid의 경우에 $3.29\;dB{\sim}3.47\;dB$로 측정되었으며 Hybrid coupler type의 경우에는 $3.17\;dB{\sim}3.42\;dB$로 측정되어 3.5 dB 미만을 만족하였다. ANT단과 Port단 사이의 Isolation은 Chip coupler type Isohybrid의 경우에 $24.23\;dB{\sim}29.98\;dB$로 측정되었으며 Hybrid coupler type의 경우에는 $26.28\;dB{\sim}36.91\;dB$로 측정되어 23 dB 이상의 우수한 특성을 확인하였다.

Keywords

References

  1. R.C. Shapiro, '900 MHz tnmked radio systems ferrite hybrid combining for closed space transmitters,' IEEE 39th Vehicular Technology Conference, pp.349-352, May 1989
  2. S. Kazaminejad, D. P. Howson, A. Baghai, G. Hamer, 'Cellular radio transmitter combiners for narrow co-channel spacing,' Fifth International Conference on Mobile Radio and Personal Communications, pp.57-59, Dec 1989
  3. S. Gao, P. Gardner, 'Integrated antenna/power combiner for LINC radio transmitters,' IEEE Transactions on Microwave Theory and Techniques, Vol. 53, pp.1083-1088, March 2005 https://doi.org/10.1109/TMTT.2005.843491
  4. Douglas K. Linkhart, Microwave Circulator Design, Artech House, 1989
  5. David M. Pozar, Microwave Engineering, Addison-Wesley, 1996
  6. D. C. Cox, 'Linear amplification with nonlinear components,' IEEE Trans. Commun., vol. COM-22, no. 12,pp. 1942-1945, Dec. 1974
  7. S. Gao, P. Gardner, and S. T. Chiw, 'Integrated antenna for LINC systems,' Microwave Opt. Technol. Lett., vol. 33, no. 2,pp. 93-95, Apr. 2002 https://doi.org/10.1002/mop.10240
  8. S. T. Chiw, P. Gardner, and S. Gao, 'Compact power combining patch antenna,' Electron. Lett., vol. 38, no. 23, pp. 1413-1414, Nov. 2002 https://doi.org/10.1049/el:20020987
  9. A. K. Jolmson and R. Myer, 'Linear amplifier combiner,' in Proc. 37th IEEE Veh. Technol. Conf. Tampa, FL, pp. 421-423, Jun. 1987