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Synthesis of a Three-Channel Waveguide Microwave Multiplexer with a Modified Structure

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Abstract

The synthesis procedure of a waveguide multiplexer with a modified structure is considered. Compared with standard methods, the approach to the synthesis of this structure is based on the principle of decomposition, to simplify and accelerate the development of complicated devices. To check the performance ability of a proposed structure, the three-channel X-band waveguide multiplexer with a modified design of channel filters was synthesized. Design and experimental results are compared.

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REFERENCES

  1. M. B. Teresa, Satellite Communications Payload and System (Wiley, New York, 2012).

    Google Scholar 

  2. J. R. M. Vaughan, IEEE Trans. Electron Devices 35, 1172 (1988).

    Article  Google Scholar 

  3. R. J. Cameron and M. Yu, IEEE Microwave Mag. 8 (5), 46 (2007).

    Article  Google Scholar 

  4. V. I. Chekhutskii, Molodezhn. Nauch-Tekh. Vestn., No. 10, 53 (2013).

  5. R. J. Cameron and J. D. Rhodes, IEEE Trans. Microwave Theory Tech. 29, 51 (1981).

    Article  Google Scholar 

  6. Bosch Telecom GmbH (now Teasat-Spacecom GmbH). Passive Components for Space Applications. Product brochure (1999), p. 8. http://www.electronicnote.com/media/ downloads/Bosch%20Passive%20Components.pdf.

  7. A. Panariello, M. Yu, and C. Ernst, IEEE Trans. Microwave Theory Tech. 61, 382 (2013).

    Article  Google Scholar 

  8. Yi-Chi Shih, IEEE Trans. Microwave Theory Tech. 32, 695 (1984).

    Article  Google Scholar 

  9. A. V. Kondratenko and M. L. Shevlyakov, Kompon. i Tekhnol., No. 11, 16 (2008).

  10. M. B. Manuilov and K. V. Kobrin, in Actual Problems of Electron Instrument Making (Proc. Int. Sci.-Techn. Conf., Saratov, Sept. 22–23, 2016) (Saratov. Gos. Tekh. Univ., Saratov, 2016), Vol. 1, p. 297.

  11. G. L. Matthaei, L. Young, and E. M. T. Jones, Microwave Filters, Impedance-Matching Networks, and Coupling Structures (McGraw-Hill, New York, 1964; Svyaz’, Moscow, 1972).

  12. M. Uhm, J. Lee, I. Yom, and J. Kim, ETRI J. 28 (2), 223 (2006).

    Article  Google Scholar 

  13. S. Cogollos, P. Soto, V. E. Boria, et al., IEEE Trans. Microwave Theory Tech. 63, 2540 (2015).

  14. M. Brumos, S. Cogollos, M. Martinez, et al., in Proc. IEEE Microwave Symp. Tampa Bay, FL, June 1–6, 2014 (IEEE, New York, 2014), p. 76.

  15. A. V. Kondratenko, A. I. Miller, and M. L. Shevlyakov, Kompon. i Tekhnol., No. 7, 96 (2009).

  16. A. A. Kirilenko, S. L. Senkevich, V. I. Tkachenko, and B. G. Tysik, IEEE Trans. Microwave Theory Tech. 42, 1393 (1994).

    Article  Google Scholar 

  17. E. Ofli, R. Vahldieck, and S. Amari, IEEE Trans. Microwave Theory Tech. 53, 843 (2005).

    Article  Google Scholar 

  18. B. M. Kats, A. V. Vorob’ev, and V. P. Meshchanov, Radiotekhnika, No. 10, 195 (2016).

  19. Computer Simulation Technology AG. CST Microwave Studio—Workflow and Solver Overview (2015), p. 7.

  20. NI AWR Design Environment. http://www.awrcorp.com/products/ni-awr-design-environment/microwave-office (Cited Sept.: 16.09.2017).

  21. M. P. Apin, S. I. Bokov, N. A. Bushuev, et al., Microwave Filters and Multiplexers for Systems of Space Communication, Ed. by V. P. Meshchanov (Radiotekhnika, Moscow, 2017) [in Russian].

    Google Scholar 

  22. M. Hiebel, Fundamentals of Vector Network Analysis, 5th ed. (Rohde & Schwarz GmbH, Germany, 2008).

    Google Scholar 

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Correspondence to A. V. Vorob’ev.

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Translated by M. Kromin

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Vorob’ev, A.V., Kats, B.M., Komarov, V.V. et al. Synthesis of a Three-Channel Waveguide Microwave Multiplexer with a Modified Structure. J. Commun. Technol. Electron. 64, 477–483 (2019). https://doi.org/10.1134/S1064226919050139

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  • DOI: https://doi.org/10.1134/S1064226919050139

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