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电信和无线电工程
SJR: 0.202 SNIP: 0.2 CiteScore™: 0.23

ISSN 打印: 0040-2508
ISSN 在线: 1943-6009

卷:
卷 78, 2019 卷 77, 2018 卷 76, 2017 卷 75, 2016 卷 74, 2015 卷 73, 2014 卷 72, 2013 卷 71, 2012 卷 70, 2011 卷 69, 2010 卷 68, 2009 卷 67, 2008 卷 66, 2007 卷 65, 2006 卷 64, 2005 卷 63, 2005 卷 62, 2004 卷 61, 2004 卷 60, 2003 卷 59, 2003 卷 58, 2002 卷 57, 2002 卷 56, 2001 卷 55, 2001 卷 54, 2000 卷 53, 1999 卷 52, 1998 卷 51, 1997

电信和无线电工程

DOI: 10.1615/TelecomRadEng.v78.i4.60
pages 363-372

STATISTICAL DOPPLER SIGNAL MODEL OF INDEPENDENT AIRCRAFT VELOCIMETER

I. V. Baryshev
National Aerospace University (Kharkiv Aviation Institute), 17 Chkalov St., Kharkiv 61070, Ukraine
K. A. Scherbina
National Aerospace University (Kharkiv Aviation Institute), 17 Chkalov St., Kharkiv 61070, Ukraine
E. P. Msallam
N. Zhukovskiy National Aerospace University (Kharkov Aviation Institute), 17 Chkalov St., Kharkiv, 61070, Ukraine
K. N. Nezhalskaya
National Aerospace University (Kharkiv Aviation Institute), 17 Chkalov St., Kharkiv, 61070, Ukraine
М. А. Vonsovich
N. Zhukovskiy National Aerospace University (Kharkov Aviation Institute), 17 Chkalov St., Kharkiv, 61070, Ukraine

ABSTRACT

The research paper summarizes the theoretical results of the Doppler signal synthesis generated by underlying surface. It is demonstrated that the synthesized model can be represented as an amplitude-modulated in envelope and a frequency-modulated one in carrier. On the basis of the synthesized model computerized simulation was done, the results of which are shown as respective characteristic curves of the Doppler signal under consideration. Spectral analysis was performed by the fast Fourier transform method and represented as analytic spectrum in paper. Experimental results are in line with well-known data registered in the relevant references covering the issues of the Doppler signals processing.


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