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Global optimization design of quasi-optics fower combiner of solid-state millimeter wave resonator

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Abstract

This paper describes a global optimization design of quasi-optics power combiner of solid-state millimeterwave resonator. It is operated in the frequency range from 50 to 300 GHz using GaAs Gunn diodes. It is shown that sourcearrays containing N2 (N=3,5,...2K+1, where k is positive integer) individual elements. It is very efficient power transfer of energy from the source-array to the fractional power of the fundamental beam mode etc.. The RF output power exceeded the sum of the individual diodes to be threefold to sevenfold. And this data is the global optimization solution.

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References

  1. L.Wandinger etc. “Millimeter-Wave Power Combiner Using Quasi-Optcal Tech-niques” IEEE MTT-31 No.2, 1983, pp189–193.

    Google Scholar 

  2. J.W.Mink, “Quasi-Optical POwer Combinig of Solid State Millimeter Wave Source” IEEE MTT-34 No. 2 1986, pp273–279.

    Google Scholar 

  3. J.W.Mink “Disign of a lillimeter Wave Quasi-Optical Power Combiner for IMPATT Diode (K.D.Stephan Professer gived it tous).

  4. Z.B.Povovic etc. “Bar-Grid Oscillators” IEEE MTT-37 No.8,1989.

  5. Cheng-tian Xue, Qiao-min Wang etc. 6-Millimeter Wave Solid State Souce Power Combiner, Int. J. Infrared and Millimeterwave, Vol.9,No.4, 1988,pp385–393.

    Google Scholar 

  6. Cheng-tian Xue, Qiao-min Wang and Hui-zhen Li, Optimization Calculation of Solid State Power Combining Source of Waveguid Cavity, Int. J. Infrared Millimeter wave, Vol.9,No.8, 1988 pp733–738.

    Google Scholar 

  7. Cheng-tian Xue, Qiao-min Wang etc. Millimeter-wave Quasi-Optical Power Combinig Techniques, Int. J. Infrared and Millimeterwave, Vol.9No.4,pp395–404, 1988.

    Google Scholar 

  8. Cheng-tian Xue, Qiao-min Wang, Disciussion of the Source-Array Plane Location in the Quasi-Optical Cavity for Solid State Power Combining, Int. J. Infrared and Millimeter-wave, Vol.9,No.8, 1988,pp725–732.

    Google Scholar 

  9. Cheng-tian Xe, Qiao-min Wang, A Six MMW Power Combining of Solid State Source Using Quasi-Optical Techniques, Proceedings of Second Asia-Pacific Micro wave Conference, 1988, Bejing, China,pp190–191

  10. Optical Theory and Disign for Power Combinig of Solid State Sources, p541, as stated above.

  11. Cheng-tian Xue, Qiao-min Wang, Effective Power Combinig of Solid State Source in MMW Range Using CAD Techniques, tohave beenaccepted by “The 14th International Conference on Infrared and Millineter Waves”, October 2–6, 1989, University Wurzburg, F. R. Germany.

  12. Cheng-tian Xue, Qiao-min Wang, Effective Power Combinig for Solid State Sources at 3-MMW Using Quasi-Optical Techniques, as stated above.

  13. Qiao-min Wang, Hui-zhen Li, Cheng-tian Xue, Design for the Quasi-Optical Source-Array in 3 Millimeter WAve Band, reported in “International Conference on Millimeter Wave and Far-Infrared Technology” hold in Beijing, Peoples Republic of China, tentatively scheduled during June 18–22, 1990.

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Li, HZ., Xue, Ct. Global optimization design of quasi-optics fower combiner of solid-state millimeter wave resonator. Int J Infrared Milli Waves 12, 1437–1449 (1991). https://doi.org/10.1007/BF01883876

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  • DOI: https://doi.org/10.1007/BF01883876

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