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On the Optimization of the Coaxial-Conical-Radial Type Power Divider/Combiner and the Improvement of Isolation Characteristics

동축-원추-방사형 전력분할/합성기의 중심부 높이에 따른 최적설계와 아이솔레이션 특성 향상

  • Received : 2011.04.26
  • Accepted : 2011.08.29
  • Published : 2011.09.01

Abstract

In order to realize a high performance(low loss, high isolation) microwave power divider/combiner, we have designed the power combiner/divider precisely in accordance with the different hight of central part. In the case of the high central part of the hight of $h_r$=10.2, a compensating part of the conical line is inserted in the conical conversion transmission line, and in the case of low central part of the hight of $h_r$=5.0, the conical conversion transmission line is remodeled into the 2-stage bend structure. In both case, the reflection characteristics are improved to 30dB over the operating frequency range of 5GHz bandwidth. A resistance is inserted between the peripheral ports so as to try to improve the isolation characteristics of the device. For the 16-divider/combiner, the isolation characteristics are improved to 10dB over the operating frequency range of 5GHz bandwidth.

Keywords

References

  1. Y. K Choi, "Design of a Broadband Microwave Power Divider/Combiner using Coaxial-Conical- Radial Transmission Line Conversion", Trans. KIEE, Vol. 60, No. 7, Jul, 2011.
  2. K. Solbach, "Simulation Study of Harmonic Oscillator", IEEE Trans. Microwave Theory Tech., Vol. MTT-30, No. 8, pp. 1233-1237, Aug. 1989.
  3. A. Alexanian, H. C. Chang and R. York, "Enchanced Scanning Range in Coupled Oscillator Arrays Utilizing Frequency Multipliers," IEEE AP-S Symp. Dig., pp. 1308-1310, Newport Beach, CA, 1995.
  4. R. Adler, "A study of Locking phenomena in oscillator", Proc. IRE, 34, pp. 351-357, 1946. https://doi.org/10.1109/JRPROC.1946.229930
  5. I. Schmideg, "Harmonic Synchronization of Nonlinear Oscillators," Proc. IEEE, vol.59, pp. 1250-1251, 1971. https://doi.org/10.1109/PROC.1971.8374
  6. R. A. York and T. Itoh, "Injection- and Phase-Locking Techniques for Beam Control," IEEE Trans. Microwave Theory Tech., vol. 46, no. 46, no. 11, pp. 1920-1929, Nov. 1998. https://doi.org/10.1109/22.734513
  7. A. S. Daryoush, T. Berceli, R. Saedi, P. R. Herczfeld, and A. Rosen, Theory of Subharmonic Synchronization of Nonlinear Oscillators," IEEE MTT-S Dig., pp. 735-738. 1989.
  8. X. Zhang, X. Zhou, B. Aliener, and A. S. Daryoush, "A Study of Subharmonic Injection Locking for Local Oscillators," IEEE Microwave and Guide Wave Letters, vol.2, no. 3, March, 1992.
  9. X. Zhang, X. Zhou, and A. S. Daryoush, "A Theoretical and Experimental Study of the Noise Behavior of subharmonically Injection Locked Local Oscillators," IEEE Trans. Microwave Theory Tech., vol. 40, no. 5, pp. 895-902, May 1992. https://doi.org/10.1109/22.137395
  10. P. Liao, R. A. York, " A New Phase-Shifterless Beam-Scanning Techique Using Arrays of Coupled Oscillators," IEEE Trans. Microwave Theory Tech., vol. 41, no. 10, pp. 1810-1815, Oct. 1993. https://doi.org/10.1109/22.247927
  11. S. Kishimoto, M. Itho, K. Maruhashi, and K.Ohta, "Q-band Inject Synchronization Oscillator" Technical Report, MW2002-162, Japan. 2003