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Tunable lumped element notch filter for UHF communications systems

Thesis (MEng)--Stellenbosch University, 2018.

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Main Author: Benson, Peter-Luke
Other Authors: Meyer, Petrie
Format: Thesis
Language:en_ZA
Published: Stellenbosch : Stellenbosch University 2018
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access_status_str Open Access
author Benson, Peter-Luke
author2 Meyer, Petrie
author_browse Benson, Peter-Luke
Meyer, Petrie
author_facet Meyer, Petrie
Benson, Peter-Luke
author_sort Benson, Peter-Luke
collection Thesis
dc_rights_str_mv Stellenbosch University
description Thesis (MEng)--Stellenbosch University, 2018.
format Thesis
id oai:scholar.sun.ac.za:10019.1/103660
institution Stellenbosch University (South Africa)
language en_ZA
last_indexed 2026-06-10T12:43:57.787Z
license_str Other — see source repository
provenance_str_mv Harvested via OAI-PMH from SUNScholar — Stellenbosch University Repository
publishDate 2018
publishDateRange 2018
publishDateSort 2018
publisher Stellenbosch : Stellenbosch University
publisherStr Stellenbosch : Stellenbosch University
record_format dspace
source_str SUNScholar — Stellenbosch University Repository
spelling oai:scholar.sun.ac.za:10019.1/103660 Tunable lumped element notch filter for UHF communications systems Benson, Peter-Luke Meyer, Petrie Stellenbosch University. Faculty of Engineering. Dept. of Electrical and Electronic Engineering. Spurious free dynamic range Tunable lasers High-frequency radio UCTD Thesis (MEng)--Stellenbosch University, 2018. ENGLISH ABSTRACT: The focus of this work is to solve for the electromagnetic problem of large linear antenna arrays efficiently and accurately within the context of two-dimensional (2D), transverse magnetic (TM) Method of Moments (MoM). Provided that the meshing size is small enough, the MoM can provide accurate results for electromagnetic simulations. However, the memory storage and computational time scale as O(N2) and O(N3) respectively, where N is the number of basis functions. The electrical size solvable with given computational resources is therefore limited. To analyze large antenna arrays, the Characteristic Basis Function Method (CBFM) is employed. This technique decomposes the entire geometry into subdomains, over which, physics-based macro basis functions called CBFs are defined. By using macro basis functions, the aim is to define the same electromagnetic problem using fewer degrees of freedom as compared to the standard MoM. Firstly, a CBFM code where a subdomain is defined to be an antenna element is implemented. The results of CBFM using up to quaternary CBFs (higher-order CBFs) are compared to that of the MoM. Secondly, CBFM with larger overlapping subdomains which span multiple antenna elements in an array is defined, so as the mutual coupling in dense antenna arrays is better represented. To generate higher-order CBFs, the distance-based criterion is proposed which is found to be a more efficient procedure than the conventional tree-based approach, for larger subdomain CBFM. The results for larger subdomain CBFM including the distancebased criterion are compared to the conventional single antenna subdomain CBFM over a range of frequencies. AFRIKAANSE OPSOMMING: Die fokus van hierdie werk is om die elektromagnetiese probleem van groot, liniêre antenna samestellings effektief en akkuraat op te los, binne die konteks van die tweedimensionele (2D), transversaal-magnetiese (TM) Moment Metode (MoM). Indien die maas-grootte klein genoeg is, dan lewer die MoM akkurate elektromagnetiese simulasie resultate, maar die rekenaargeheue en berekeningstyd skaleer as O(N2) en O(N3), onderskeidelik, waar N die aantal basisfunksies verteenwoordig. Die oplosbare elektriese grootte met gegewe rekenaarkrag, is dus beperk. Die Karakteristieke Basisfunksie Metode (KBFM) word gebruik om groot antenna samestellings te analiseer. Hierdie tegniek breek die geometrie op in sub-strukture, waaroor fisies-gefundeerde makro basisfunksies genaamd KBFs, gedefinieer word. Die doel van makro basisfunksies is om die gegewe elektromagnetiese probleem se oplossing met minder vryheidsgrade voor te stel, in vergelyking met die standaard MoM. ’n KBFM kode waar die sub-strukture ooreenstem met die antenna elemente, is eerstens geïmplementeer. KBFM resultate met tot vierde-orde KBFs word vergelyk met die MoM. Tweedens word die KBFM met groter, oorvleuelende sub-strukture wat oor verskeie antenna elemente strek, gedefinieer, sodat wedersydse koppeling in digte antenna samestellings beter in ag geneem word. Om hoër-orde KBFs te skep, word ’n afstand-gebaseerde kriterium voorgestel, en daar word bepaal dat dit ’n meer effektiewe prosedure is as die konvensionele boomstruktuur gebaseerde benadering, vir groter sub-struktuur KBFM. Resultate vir groter sub-struktuur KBFM met afstand-gebaseerde kriterium, word vergelyk met die konvensionele enkel-antenna sub-struktuur KBFM, oor ’n wye frekwensiebereik. 2018-02-27T09:32:53Z 2018-04-09T07:05:21Z 2018-02-27T09:32:53Z 2018-04-09T07:05:21Z 2018-03 Thesis http://hdl.handle.net/10019.1/103660 en_ZA Stellenbosch University 96 pages : illustrations application/pdf Stellenbosch : Stellenbosch University
spellingShingle Spurious free dynamic range
Tunable lasers
High-frequency radio
UCTD
Benson, Peter-Luke
Tunable lumped element notch filter for UHF communications systems
title Tunable lumped element notch filter for UHF communications systems
title_full Tunable lumped element notch filter for UHF communications systems
title_fullStr Tunable lumped element notch filter for UHF communications systems
title_full_unstemmed Tunable lumped element notch filter for UHF communications systems
title_short Tunable lumped element notch filter for UHF communications systems
title_sort tunable lumped element notch filter for uhf communications systems
topic Spurious free dynamic range
Tunable lasers
High-frequency radio
UCTD
url http://hdl.handle.net/10019.1/103660
work_keys_str_mv AT bensonpeterluke tunablelumpedelementnotchfilterforuhfcommunicationssystems