Frequency spectrum synthesizers in radio electronic systems

Radio engineering, including TV systems and devices


Аuthors

Krikov D. S.

Central Scientific Research Radiotechnical Institute name of the academician A.I. Berg, 20, Novaya Basmannaya, 105066, Russia

e-mail: DIMAN-08@mail.ru

Abstract

Frequency synthesizers (FS) find wide application in modern radio electronic systems (RES), such as mobile communications, precision measuring devices, radar and radio navigation systems. The development of new and promising RES as well as the outdated radio engineering systems modernization requires more advanced, in terms of technical parameters, FSs. The article examines mobile devices, measuring equipment, radio direction-finders and transceiver modules. A structural diagram, technical data on the capabilities of the device and an analysis of its operation are presented for each type of devices. Based on the results of the analysis, conclusions are to be made on the method of frequency synthesis, FS quantitative and qualitative characteristics, and trends for their improvement. In the field of mobile communications, engineers are trying to reduce weight, size and power consumption of microcircuits being a part of mobile devices, including the FS chip. Qualitative development of measuring devices requires time reduction of frequency tuning of the FS to the microsecond-nanosecond range. Radar systems require not only high speed, but also low levels of spectral components and phase noise of the FS. For radar systems employing active phased array antennas the critical parameters of FS are weight, size, power consumption and cost. The current level of FS based on digital phase-locked loop (PLL) with integer or fractional frequency division factor, digital direct synthesis and hybrid structures does not allow achieving high values of certain FS parameters, without degrading the other.

Keywords:

frequency spectrum synthesizer, position finger, transceiver modules, signal spectrum analyzer, vector analyzer of circuits

References

  1. Merfi E., Sletteri K., Vlasenko A. Komponenty i tekhnologii, 2006, no. 61, pp. 52 – 55.

  2. Krikov D.C., Dobychina E.M. Elektrosvyaz’, 2017, no. 4, pp. 52 – 57.

  3. Irkos. Katalog “Tekhnicheskie sredstva radiomonitoringa”, available at: http://www.ircos.ru

  4. Mobil’naya stantsiya radiokontrolya “Skorpion-M”, available at: http://doc.knigi-x.ru

  5. Statsionarnaya izmeritel’naya stantsiya radiomonitoringa i pelengovaniya “ARK-SSI (ARChA-I), ARK-SSIN (ARChA-IN)”, available at: http://www.bnti.ru

  6. Kompaniya Keysight Technologies, available at: https://www.keysight.com

  7. Kompaniya Rohde&Schwarz, available at: https://www.rohde-schwarz.ru

  8. Vektornyi analizator elektricheskikh tsepei R&SZVA, available at: https://www.rohde-schwarz.ru

  9. Generator signalov SVCh-diapazona SMF100A, available at: http://www.niphrit.ru

  10. Obmen dannymi. VCh priemoperedatchik, available at: http://www.symmetron.ru

  11. Berlin A.N. Tsifrovye sotovye sistemy svyazi (Digital cellular communication systems), Moscow, Eko-Trendz, 2007, 296 p.

  12. Kratkii obzor tekhnologii Wi-Fi, available at: http://pandia.ru

  13. Izuchenie radiochastotnoi chasti dlya korotkikh rasstoyanii besprovodnoi sistemy peredachi dannykh Bluetooth, available at: http: //infopedia.su

  14. Genov A.A., Osipov V.V., Savilkin S.B. Trudy MAI, 2016, no. 87, available at: http://trudymai.ru/eng/published.php?ID=69734

  15. Voskresenskii D.I., Ovchinnikova E.V., Shmachilin P.A. Bortovye tsifrovye antennye reshetki i ikh element (Onboard digital antenna arrays and their elements), Moscow, Radiotekhnika, 2013, 208 p.

  16. Voskresenskii D.I. Ustroistva SVCh i antenny. Proektirovanie faziro-vannykh antennykh reshetok (Microwave devices and antennas. Design of phased antenna arrays), Moscow, Radiotekhnika, 2012, 744 p.

  17. Na istrebitelyakh MiG-29 postavyat radary s AFAR, available at: http://www.arms-expo.ru

  18. BRLS s aktivnoi fazirovannoi antennoi reshetkoi (AFAR) “ZhUK-A”, available at: http://bastion-karpenko.ru

  19. Dobychina E.M., Malakhov R.Yu. Nauchnyi vestnik MGTU GA, 2012, no. 186, pp. 176 – 183.

  20. D.M. Kos’min, I.V. Kotel’nikov, V.N. Osadchii, V.V. Luchinin, A.B. Kozyrev. Fazovrashchateli dlya svyaznykh fazirovannykh antennykh reshetok diapazona chastot 2÷30 GHz, available at: http://mwelectronics.ru

  21. Dobychina E.M., Malakhov R.Yu. Nauchnyi vestnik MGTU GA, 2014, no. 209, pp. 117 – 123.

  22. Agilent Technologies. Metody izmereniya fazovogo shuma, available at: http://radiorf.ru

  23. Bel’chikov S. Komponenty i tekhnologii, 2009, no. 5, pp. 139 – 146.

  24. Manassevich V. Sintezatory chastot. Teoriya i proektirovanie (Frequency synthesizers. Theory and Design), Moscow, Svyaz’, 1979, 384 p.

  25. Ryzhkov A.V., Popov V.N. Sintezatory chastot v tekhnike radiosvyazi (Frequency synthesizers in radio engineering), Moscow, Radio i svyaz’, 1991, 264 p.


Download

mai.ru — informational site MAI

Copyright © 2000-2024 by MAI

Вход