Investigating wireless network deployment configurations for marginalized areas

dc.contributor.advisorThinyane, Men
dc.contributor.advisorTerzoli, Aen
dc.contributor.authorNdlovu, Nkanyisoen
dc.date.accessioned2026-08-13T00:07:24Z
dc.date.available2026-08-13T00:07:24Z
dc.date.issued2011en
dc.description.abstractIn recent years, immense effort has been channelled towards the Information and Technological development of rural areas. To support this development, telecommunication networks have been deployed. The availability of these telecommunication networks is expected to improve the way people share ideas and communicate locally and globally, reducing limiting factors like distance through the use of the Internet. The major problem for these networks is that very few of them have managed to stay in operation over long periods of time. One of the major causes of this failure is the lack of proper monitoring and management as, in some cases, administrators are located far away from the network site. Other factors that contribute to the frequent failure of these networks are lack of proper infrastructure, lack of a constant power supply and other environmental issues. A telecommunication network was deployed for the people of Dwesa by the Siyakhula Living Lab project. During this research project, frequent visits were made to the site and network users were informally interviewed in order to gain insight into the network challenges. Based on the challenges, different network monitoring systems and other solutions were deployed on the network. This thesis analyses the problems encountered and presents possible and affordable solutions that were implemented on the network. This was done to improve the network‟s reliability, availability and manageability whilst exploring possible and practical ways in which the connectivity of the deployed telecommunication network can be maintained. As part of these solutions, a GPRS redundant link, Nagios and Cacti monitoring systems as well as Simple backup systems were deployed. v Acronyms AC Access Concentrators AMANDA Automatic Marylyn Network Disk Archiver CDMA Code Divison Multiple Access CGI Common Gateway Interface.en
dc.format146 leaves; 30 cmen
dc.formatpdfen
dc.identifier.citationNdlovu, Nkanyiso. 2011en
dc.identifier.othervital:11385en
dc.identifier.otherhttp://hdl.handle.net/10353/463en
dc.identifier.otherWireless LAN -- South Africa -- Eastern Capeen
dc.identifier.otherInformation networks -- South Africa -- Eastern Capeen
dc.identifier.otherInformation technology -- South Africa -- Eastern Capeen
dc.identifier.otherIEEE 802.16 (Standard)en
dc.identifier.otherTelecommunication wiring -- South Africa -- Eastern Capeen
dc.identifier.otherInternet -- South Africa -- Eastern Capeen
dc.identifier.otherGlobalization -- South Africa -- Eastern Capeen
dc.identifier.urihttp://hdl.handle.net/20.500.11837/4618
dc.language.isoEnglishen
dc.publisherUniversity of Fort Hareen
dc.publisherFaculty of Science & Agricultureen
dc.rightsUniversity of Fort Hareen
dc.subjectWireless LAN -- South Africa -- Eastern Capeen
dc.subjectInformation networks -- South Africa -- Eastern Capeen
dc.subjectInformation technology -- South Africa -- Eastern Capeen
dc.subjectIEEE 802.16 (Standard)en
dc.subjectTelecommunication wiring -- South Africa -- Eastern Capeen
dc.subjectInternet -- South Africa -- Eastern Capeen
dc.subjectGlobalization -- South Africa -- Eastern Capeen
dc.titleInvestigating wireless network deployment configurations for marginalized areasen
dc.title.alternativeInvestigating wireless network deployment configurations for marginalized areasen
dc.typeThesisen
dc.typeMastersen
dc.typeMSc (Computer Science)en

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