Infrastructure Engineering - Research Publications

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    Land registry futures: a vision for the role of tomorrow's land registries: or another view of the cathedral
    BENNETT, ROHAN ; WALLACE, JUDE ; Marwick, Brian ( 2010)
    Australia and her states have significantly improved land information management since 1982: cadastres were digitized, land registries computerized, GIS was incorporated, and SDIs developed. However, the risk of a special land information babel as espoused by Justice Kirby in 1982 still remains, particularly in the realm of land registries. Australia is now entering the era of national approaches to land registration. The national eConveyancing system represents the first step. Many more initiatives will follow. Australia’s land registries need to continue collaboration in order to build a coherent national vision based around key registries, spatial enablement, and shared services. The power inherent in all land registry information must be unleashed. Land registries are more than mere pocketknives for conveyancing. They are multi-purpose tools with the capacity to service society with the information needed to respond our most pressing challenges.
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    Spatially Enabling Land Administration: Drivers, Initiatives and Future Directions for Australia
    Wallace, JW ; MARWICK, B ; Bennett, RMB ; Rajabifard, AR ; Williamson, IPW ; TAMBUWALA, N ; POTTS, K ; AGUNBIADE, M ; Rajabifard, A ; Crompvoets, J ; Kalantari, M ; Kok, B (Leuven University Press, 2010)
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    Cadastral futures: building a new vision for the nature and role of cadastres
    Bennet, Rohan ; Rjabifard, Abbas ; Kalantari, Mohsen ; WALLACE, JUDE ; WILLIAMSON, IAN (FIG Congress 2010, 2010)
    Over the last thirty years spatial information technologies and sustainability theory drove the creation of new visions, models and roles for the cadastre. Concepts including multi purpose cadastres, Cadastre 2014, and sustainable land administration radically altered understandings of the cadastre and its potential. Many of these concepts continue to be relevant in the contemporary context; however, like all disciplines, cadastral science must continue to look to the future to remain relevant. This paper begins this process and aims to provide preliminary insights into the characteristics and potential role of future cadastres. A qualitative research design based upon an exploratory case study underpins the research. Factors including globalisation, population urbanization, good governance, climate-change response, environmental management, 3D visualization/analysis technologies, wireless sensor networks, standardization, and interoperability are found to be driving developments in the cadastral domain. Consequently, six design elements of future cadastre emerge: Survey-Accurate Cadastres, Object-Oriented Cadastres, 3D/4D Cadastres, Real-Time Cadastres, Global Cadastres, and Organic Cadastres. Together, these elements provide a preliminary vision for the role and nature of future cadastres: the elements can be seen as likely characteristics of future cadastres. Collaborative research, potentially through the FIG framework, would enable further development of these design elements and would assist in defining the nature and role of future cadastral systems.
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    Land Administration for Sustainable Development
    WILLIAMSON, I ; Enemark, S ; WALLACE, J ; RAJABIFARD, A (ESRI Press, 2010)