Full Text Available

Note: Clicking the button above will open the full text document at the original institutional repository in a new window.

A design environment for the automated optimisation of low cross-polarisation horn antennas

Thesis (MScEng (Electrical and Electronic Engineering))--University of Stellenbosch, 2010.

Saved in:
Bibliographic Details
Main Author: Van der Walt, Madele
Other Authors: Meyer, P.
Format: Thesis
Language:English
Published: Stellenbosch : University of Stellenbosch 2010
Subjects:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1867613949843734528
access_status_str Open Access
author Van der Walt, Madele
author2 Meyer, P.
author_browse Meyer, P.
Van der Walt, Madele
author_facet Meyer, P.
Van der Walt, Madele
author_sort Van der Walt, Madele
collection Thesis
dc_rights_str_mv University of Stellenbosch
description Thesis (MScEng (Electrical and Electronic Engineering))--University of Stellenbosch, 2010.
format Thesis
id oai:scholar.sun.ac.za:10019.1/5144
institution Stellenbosch University (South Africa)
language English
last_indexed 2026-06-10T12:44:16.501Z
license_str Other — see source repository
provenance_str_mv Harvested via OAI-PMH from SUNScholar — Stellenbosch University Repository
publishDate 2010
publishDateRange 2010
publishDateSort 2010
publisher Stellenbosch : University of Stellenbosch
publisherStr Stellenbosch : University of Stellenbosch
record_format dspace
source_str SUNScholar — Stellenbosch University Repository
spelling oai:scholar.sun.ac.za:10019.1/5144 A design environment for the automated optimisation of low cross-polarisation horn antennas Van der Walt, Madele Meyer, P. University of Stellenbosch. Faculty of Engineering. Dept. of Electrical and Electronic Engineering. Space mapping optimisation Horn feeds Low cross-polarisation horn antennas Circular waveguide Dissertations -- Electronic engineering Theses -- Electronic engineering Multimode horn antennas Thesis (MScEng (Electrical and Electronic Engineering))--University of Stellenbosch, 2010. ENGLISH ABSTRACT: The aggressive space mapping algorithm is used in this project for the optimisation of electromagnetic structures. This technique combines the use of fast, less accurate models with more time-consuming, high precision models in the optimisation of a design. MATLAB’s technical computing environment possesses powerful tools for optimisation as well as the graphical representation and mathematical post-processing of data. A software interface, which uses Visual Basic for Applications, is created between MATLAB and the electromagnetic solvers, CST Microwave Studio and μWave Wizard, that are used for the fine and coarse model calculations. The interface enables the direct interchange of data, which allows MATLAB to control the optimisation for the automation of the design process. The optimisation of a microwave coaxial resonator with input coupling is used to demonstrate the design environment. An accurate equivalent circuit model is available to describe the problem. The space mapping optimisation of this structure works well, with a significant improvement in the efficiency of the optimisation when compared to standard optimisation techniques. Multimode horn antennas are of interest for use as feeds in radio-astronomy telescope systems. The design of a stepped circular horn antenna in the space mapping design environment is presented. The horn’s radiation pattern is optimised for low cross-polarisation. This structure is much more complex to model than the resonator example. The generalised scattering matrix representation is used in the coarse model description. The far-fields are calculated from the aperture fields by means of the Fast Fourier Transform. Various tests confirm that the optimisation is steered in the right direction as long as the coarse model response follows the trend of the fine model response over the optimisation space. The presented design environment is a powerful tool for the automation of the design of electromagnetic structures. AFRIKAANSE OPSOMMING: Die aggressiewe ruimte-afbeelding algoritme word in hierdie projek gebruik vir die optimering van elektromagnetiese strukture. Hierdie tegniek kombineer die gebruik van vinnige, minder akkurate modelle tesame met tydrowende hoë presisie modelle tydens die optimering van ’n ontwerp. MATLAB se tegniese verwerkingsomgewing beskik oor kragtige gereedskap vir optimering sowel as die grafiese voorstelling en wiskundige verwerking van data. ’n Sagteware koppelvlak, wat Visual Basic for Applications benut, word geskep tussen MATLAB en die elektromagnetiese oplossers, CST Microwave Studio en μWave Wizard, wat vir die fyn en growwe model berekeninge gebruik word. Hierdie koppelvlak maak die direkte uitruiling van data moontlik, wat MATLAB in staat stel om die optimering te beheer ten einde die ontwerpsproses te outomatiseer. Die optimering van ’n mikrogolf koaksiale resoneerder met intree koppeling word gebruik om die ontwerpsomgewing te demonstreer. ’n Akkurate ekwivalente stroombaanmodel is beskikbaar om die probleem mee te beskryf. Die ruimte-afbeelding optimering van hierdie struktuur werk goed en toon ’n aansienlike verbetering in die doeltreffendheid van die optimering wanneer dit met standaard optimeringstegnieke vergelyk word. Multimodus horingantennes is van belang in radio-astronomie, waar dit as voere vir teleskope gebruik word. Die ontwerp van ’n trapvormige, sirkelvormige horingantenne in die ruimte-afbeelding ontwerpsomgewing word aangebied. Die stralingspatroon van die horing word optimeer vir lae kruispolarisasie. Hierdie struktuur is heelwat meer ingewikkeld om te modelleer as die resoneerder voorbeeld. Die veralgemeende strooimatriks voorstelling word gebruik in die growwe model beskrywing. Die ver-velde word bereken vanaf die velde in die bek van die antenne, deur gebruik te maak van die Vinnige Fourier Transform. Verskeie toetse bevestig dat die optimering in die regte rigting gestuur word, solank as wat die growwe model se gedrag dié van die fyn model oor die optimeringsgebied navolg. Die ontwerpsomgewing wat hier aangebied word, is ’n kragtige stuk gereedskap vir die outomatisering van die ontwerp van elektromagnetiese strukture. 2010-09-01T11:34:28Z 2010-12-15T10:14:54Z 2010-09-01T11:34:28Z 2010-12-15T10:14:54Z 2010-12 Thesis http://hdl.handle.net/10019.1/5144 en University of Stellenbosch 111 p. : ill. application/pdf Stellenbosch : University of Stellenbosch
spellingShingle Space mapping optimisation
Horn feeds
Low cross-polarisation horn antennas
Circular waveguide
Dissertations -- Electronic engineering
Theses -- Electronic engineering
Multimode horn antennas
Van der Walt, Madele
A design environment for the automated optimisation of low cross-polarisation horn antennas
title A design environment for the automated optimisation of low cross-polarisation horn antennas
title_full A design environment for the automated optimisation of low cross-polarisation horn antennas
title_fullStr A design environment for the automated optimisation of low cross-polarisation horn antennas
title_full_unstemmed A design environment for the automated optimisation of low cross-polarisation horn antennas
title_short A design environment for the automated optimisation of low cross-polarisation horn antennas
title_sort design environment for the automated optimisation of low cross polarisation horn antennas
topic Space mapping optimisation
Horn feeds
Low cross-polarisation horn antennas
Circular waveguide
Dissertations -- Electronic engineering
Theses -- Electronic engineering
Multimode horn antennas
url http://hdl.handle.net/10019.1/5144
work_keys_str_mv AT vanderwaltmadele adesignenvironmentfortheautomatedoptimisationoflowcrosspolarisationhornantennas
AT vanderwaltmadele designenvironmentfortheautomatedoptimisationoflowcrosspolarisationhornantennas