DocumentCode
927441
Title
Duct propagation modelling for the integrated-refractive-effects prediction system (IREPS)
Author
Baumgartner, G.B. ; Hitney, H.V. ; Pappert, R.A.
Author_Institution
Naval Ocean Systems Center, Ocean & Atmospheric Sciences Division, San Diego, USA
Volume
130
Issue
7
fYear
1983
fDate
12/1/1983 12:00:00 AM
Firstpage
630
Lastpage
642
Abstract
This paper reviews IREPS and some of its major products, and follows with a description of a recent effort to improve IREPS signal-prediction capabilities in tropospheric ducting environments. The IREPS products discussed are the altitude-versus-range coverage display, the path-loss-versus-range display, and a new historical propagation-conditions summary display derived from a computer-based refractivity climatology. In the GHz range elevated tropospheric layers are multimode systems, and practical beyond-the-horizon field calculations for system applications such as IREPS require simplified procedures. These simplified procedures could involve approximations directed towards speeding up waveguide calculations, or could take the form of replacing waveguide methods by ray methods or by a hybrid mixture of waveguide and ray concepts. Involved in each of these alternatives, and within the context of the modified refractivity formalism, is the need for calculating plane-wave reflection coefficients or their equivalents for layered media. The modelling effort discussed in this paper deals with the feasibility of using asymptotic forms of the plane-wave reflection coefficients for the purpose of waveguide analysis for a trilinear ducting environment.
Keywords
radiowave propagation; tropospheric electromagnetic wave propagation; IREPS; duct propagation modelling; integrated-refractive-effects prediction system; multimode systems; plane-wave reflection; refractivity climatology; signal-prediction; trilinear ducting; tropospheric ducting; tropospheric layers; waveguide calculations;
fLanguage
English
Journal_Title
Communications, Radar and Signal Processing, IEE Proceedings F
Publisher
iet
ISSN
0143-7070
Type
jour
DOI
10.1049/ip-f-1.1983.0096
Filename
4645976
Link To Document