Noise Immunity Research of Multi-Frequency Information Transmission System with Code Division of Channels
Авторы: Trubachev E.A., Senin A.I. | Опубликовано: 03.07.2019 |
Опубликовано в выпуске: #3(126)/2019 | |
DOI: 10.18698/0236-3933-2019-3-14-26 | |
Раздел: Приборостроение, метрология и информационно-измерительные приборы и системы | Рубрика: Проектирование и технология приборостроения и радиоэлектронной аппаратуры | |
Ключевые слова: code division multiple access, Rayleigh fading, multi- frequency transmission system, noise immunity, error probability, intersymbol interference, simulation of random variables |
In this paper, there is noise immunity research of one version of construction multi-frequency information transmission system with code division of user's channels. An engineering method for noise immunity estimate is developed. Error probability dependences on average signal-to-noise ratio are calculated for the cases of uniform multipath intensity profile. Researchable system comparison of noise immunity with single-frequency system of CDMA standard is made
Литература
[1] Fazel K., Kaiser S. Multi-carrier and spread spectrum systems: from OFDM and MC-CDMA to LTE and WiMAX. Singapore, Markono Print Media, 2008.
[2] Gui X., Ng T.S. Performance of asynchronous orthogonal multicarrier CDMA system in frequency selective fading channel. IEEE Trans. Commun., 1999, vol. 47, no. 7, pp. 1084–1091. DOI: 10.1109/26.774858
[3] Sourour E.A., Nakagawa M. Performance of orthogonal multicarrier CDMA in a multipath fading channel. IEEE Trans. Commun., 1996, vol. 44, no. 3, pp. 356–367. DOI: 10.1109/26.486330
[4] Hara S., Prasad R. Design and performance of multicarrier CDMA system in frequency-selective Rayleigh fading channels. IEEE Trans. Vehic. Technol., 1999, vol. 48, no. 5, pp. 1584–1595. DOI: 10.1109/25.790535
[5] Hanzo L., Munster M., Choi B.J., et al. OFDM and MC-CDMA for broadband multi-user communications, WLANs and broadcasting. John Wiley & Sons, 2003.
[6] Linnartz J.-P.M.G. Performance analysis of synchronous MC-CDMA in mobile Rayleigh channel with both delay and Doppler spreads. IEEE Trans. Vehic. Technol., 2001, vol. 50, no. 6, pp. 1375–1387. DOI:10.1109/25.966570
[7] Proakis J. Digital communications. McGraw-Hill, 2000.
[8] Lee W.C.Y. Mobile communications engineering: theory and applications. McGraw-Hill, 1997.
[9] Levin B.R. Teoreticheskie osnovy statisticheskoy radiotekhniki. T. 1 [Theoretical foundations of statistical radio engineering. Vol. 1]. Moscow, Sovetskoe radio Publ., 1966.
[10] Stein S., Jones J.J. Modern communication principles: with application to digital signaling. McGraw-Hill, 1967.
[11] Bykov V.V. Tsifrovoe modelirovanie v statisticheskoy radiotekhnike [Digital modelling in statistical radio engineering]. Moscow, Sovetskoe radio Publ., 1971.