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Solovej D. V., Sharaevsky Y. P. Complex signal passing through the nonlinear transmission line on magnetostatic waves. Izvestiya VUZ. Applied Nonlinear Dynamics, 1995, vol. 3, iss. 1, pp. 11-19.

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Language: 
Russian
Article type: 
Article
UDC: 
621.372.853

Complex signal passing through the nonlinear transmission line on magnetostatic waves

Autors: 
Solovej Dmitrij Vladimirovich, Saratov State University
Sharaevsky Yury Pavlovich, Saratov State University
Abstract: 

This article is about peculiarity of the complex signal passing (including noise signal) through the nonlinear transmission line on magnetostatic waves (MSW). The analysis is based on the method where our device is а part of transmission line with nonlinear distributive resistance. The excitement of MSW depending on different level of input signal is a cause of this nonlinear resistance. The entrance signal is considered as a sum of monochromatic and noise signals. It is shown the suppression of noise is reducing and the spectrum is narrowing on comparison with a case without monochromatic signal when
the entrance monochromatic signal exceeds the «threshold» level.

Key words: 
Reference: 
  1. Adam JD. Analog signal processing with microwave magnetics. Proc. IEEE. 1988;76(2):159-170. DOI: 10.1109/5.4392.
  2. Vashkovskii AV, Stalmakhov VS, Sharaevskii YuP. Magnetostatic Waves in Ultra-High Frequency Electronics. Saratov: Saratov University Publishing; 1993. 310 p.
  3. Adam JD, Stitzer SN. A magnetostatic wave signal- to-noise enhancer. J. Appl. Phys. Lett. 1980;36(3):485-487. DOI: 10.1063/1.91516.
  4. Adam JD. A broadband microwave signal- to noise enhancer. IЕЕЕ Trans. Magnetics. 1980;16(5):1168-1170. DOI: 10.1109/TMAG.1980.1060801.
  5. Gurzo VV, Prokushkin VN, Reikhel VV, Sharaevskii YuP. Characteristics of the attenuator with dynamic nonlinearity on surface magnetostatic waves. J. Rus. Univer. Radioelectron. 1986;29(9):95.
  6. Zubkov VI, Kildishev VN. Influence of microwave signal power on the characteristics of a microstrip line loaded with a ferrite film. Sov. J. Commun. Tech. Electron. 1988;33(9):1839-1845.
  7. Chivileva OA, Anisimov АN, Gurevich АG, Yakovlev SV, Averin AN. Interaction of sloppy and weak signals during excitation of a surface magnetostatic wave. Tech. Phys. Lett. 1987;13(24):1497-1501.
  8. Vashkovskii AV, Zubkov VI, Lokk EG, Nikitov SА. Influence of high-power microwave signal on the propagation of magnetostatic waves in ferrite films. Phys. Solid State. 1988;30(3):827-832.
  9. Anisimov AN, Chivileva OA, Gurevich АG. Effect of a high amplitude wave on the attenuation of a weak surface magnetostatic wave. Phys. Solid State. 1990;32(6):1622-1628.
  10. Gurso V, Procushkin V, Stalmahov V, Sharaevsky J. А peculiarities of the excitement of the surface magnetostatic waves above the threshold of parametric instability. In: Рrос. ISSWSS. Novosibirsk. USSR. 1986. Vol.2. P. 296.
  11. Rogozin VV, Belskii VR. Theory of ferrite limiters and noise suppressors on magnetostatic waves. Radioelectronics and Communication. 1991;2:46.
  12. Sharaevskii YuP. Passage of signals through a nonlinear transmission line on magnetostatic waves. In: Lectures on microwave electronics and radiophysics ( IX winter school-seminar). Saratov: College. 1992. P. 218.
  13. Vugalter GA, Gilinskii IА. Excitation and reception of surface magnetostatic waves by a microband converter. Tech. Phys. 1985;55(11):2250-2252.
  14. Levin BR. The Theory of Random Processes and Its Application in Radio Engineering. М.: Sovetskoe Radio; 1957. 496 p.
  15. Malyshenko VI, Solntsev VА. Nonlinear analysis of multi-frequency modes of operation of TWT at close frequencies. Electronic equipment. Series 1. Microwave electronics. 1972;10:16-26.
  16. Bunimovich VI. Fluctuation Processes in Radio Receivers. M.: Sovetskoe Radio; 1951. 360 p.
  17. Levin YuI, Sharaevskii YuP. Amplification of the narrowband noise signal in LBV O and M-types. In: Lectures on Microwave Electronics and Radiophysics (V-th winter school-seminar). Saratov: Saratov University Publishing; 1980. P. 148.
Received: 
23.03.1995
Accepted: 
24.04.1995
Published: 
15.09.1995