An Implementation Tool for Achieving Individual and Enterprise Innovation Competency. A prime challenge facing management today is how an organisation can foster a supportive culture for innovation. The purpose of this study is to apply and verify the effectiveness of existing innovation models to the manufacturing industry, culminating in a new model and set of metrics to guide the development of individual and enterprise innovation competencies. The innovation competencies will be validated th ....An Implementation Tool for Achieving Individual and Enterprise Innovation Competency. A prime challenge facing management today is how an organisation can foster a supportive culture for innovation. The purpose of this study is to apply and verify the effectiveness of existing innovation models to the manufacturing industry, culminating in a new model and set of metrics to guide the development of individual and enterprise innovation competencies. The innovation competencies will be validated through a combination of project and problem-based action learning methodologies. The project deliverables will be a range of tools, techniques and other resources to assist enterprises to become innovation ready.Read moreRead less
Decision support systems for the implementation of team based cellular manufacturing in adaptive organizations. Cellular manufacturing, where a family of products is produced in discrete multi-machine cells, has been adopted by many firms to increase flexibility, reduce costs and improve quality. However the implementation of cellular manufacturing is a complex process as technology, customer needs, product characteristics, enterprise goals and organisation structure can influence the effectiven ....Decision support systems for the implementation of team based cellular manufacturing in adaptive organizations. Cellular manufacturing, where a family of products is produced in discrete multi-machine cells, has been adopted by many firms to increase flexibility, reduce costs and improve quality. However the implementation of cellular manufacturing is a complex process as technology, customer needs, product characteristics, enterprise goals and organisation structure can influence the effectiveness of the implementation. This project will develop an intelligent model for the implementation of cellular manufacturing in batch production and test it in a case study. The work will contribute to Australia's contribution to the Intelligent Manufacturing Systems international research project SYMPHONY.Read moreRead less
Technological innovation and change in supply chain integration. In examining emerging technology that can transform the performance of Australian industry we address the following priority goals: better understanding the processes that will advance knowledge and facilitate the development of technological innovations; the potential application of Radio Frequency Identification (RFID) technologies across an entire supply chain; and the improved management of information in the storage, distribut ....Technological innovation and change in supply chain integration. In examining emerging technology that can transform the performance of Australian industry we address the following priority goals: better understanding the processes that will advance knowledge and facilitate the development of technological innovations; the potential application of Radio Frequency Identification (RFID) technologies across an entire supply chain; and the improved management of information in the storage, distribution, and delivery of products (smart information use). Improvement in the operational efficiency and performance of the supply chain will increase national wealth while minimising environmental impacts on the environment, for example, through the better utilisation of heavy freight carriers.Read moreRead less
Strategic Business Principles for the Economic Development of New Technologies in Regional Areas. The City of Onkaparinga, Fleurieu Regional Development and Flinders University have pooled their resources to identify new technologies capability in the Southern Adelaide region. Strategic and collaborative initiatives with business associations will be evaluated for the development of new economic strategies for these technologies. This region is highly representative of similar regional areas w ....Strategic Business Principles for the Economic Development of New Technologies in Regional Areas. The City of Onkaparinga, Fleurieu Regional Development and Flinders University have pooled their resources to identify new technologies capability in the Southern Adelaide region. Strategic and collaborative initiatives with business associations will be evaluated for the development of new economic strategies for these technologies. This region is highly representative of similar regional areas within Australia, in which the identification of new technologies capability is not well characterised. With a reduction in conventional heavy industry in the region, it is believed that a better understanding of new technologies capability for application to the southern region will promote essential economic growth.Read moreRead less
Evaluation of a Fatigue Risk Management System in the Australian aviation industry. The proposed project will develop and validate tools and guidance materials for design and implementation fatigue risk management systems [FRMSs]. Upon completion of the project, these tools will be made freely available to CASA and the Australian aviation industry. This will assist CASA in providing an efficient FRMS implementation strategy that has been scientifically validated. Furthermore, it will improve ....Evaluation of a Fatigue Risk Management System in the Australian aviation industry. The proposed project will develop and validate tools and guidance materials for design and implementation fatigue risk management systems [FRMSs]. Upon completion of the project, these tools will be made freely available to CASA and the Australian aviation industry. This will assist CASA in providing an efficient FRMS implementation strategy that has been scientifically validated. Furthermore, it will improve safety and minimise the cost of FRMS design and implementation to the aviation industry, which has recently undergone significant financial burden. Ultimately, this will improve safety for the flying public. Read moreRead less
Re-considering sustainable building and design: a cultural change approach. This project will help reduce the 38 per cent of all Australian waste that is produced by the construction industry by addressing the role of the building procurement team in reducing resource usage and eliminating waste. The outcomes of this research will address National Research Priority 1, An Environmentally Sustainable Australia.
Foundation systems for reactive soils using scarification and screw piles. This project will investigate the use of soil scarification, in combination with screw piles, as a reliable option for light-weight foundations on damaging reactive (expansive) clay soils. It will validate an innovative foundation alternative that will result in significant cost savings for residential foundations on reactive soil.
Optical fibre dip-sensors for in-situ environmental monitoring. This project will continue to build Australia's reputation as a global leader in both the science and technology of emerging optical fibres, which is an enabling field of research with enormous number applications in medicine, defence, and sensing. It will be an excellent vehicle for educating young physicists and engineers in Australia. The new class of low-cost environmental sensors to be created here will provide benefit to Austr ....Optical fibre dip-sensors for in-situ environmental monitoring. This project will continue to build Australia's reputation as a global leader in both the science and technology of emerging optical fibres, which is an enabling field of research with enormous number applications in medicine, defence, and sensing. It will be an excellent vehicle for educating young physicists and engineers in Australia. The new class of low-cost environmental sensors to be created here will provide benefit to Australia, enabling environmental and agricultural managers to more effectively monitor and manage natural resources such as water and nutrients and will lead to a more productive and sustainable economy.Read moreRead less
Economic complexity as a driver of innovation and smart specialisation. This project aims to determine how economic complexity can drive innovation and smart specialisation and how industry can be supported to transition to a more competitive economy. With the downturn of traditional manufacturing, innovation is crucial to create new industries and the jobs of the future. The expected outcomes of this project include high-value industry intelligence in support of product diversification. This sh ....Economic complexity as a driver of innovation and smart specialisation. This project aims to determine how economic complexity can drive innovation and smart specialisation and how industry can be supported to transition to a more competitive economy. With the downturn of traditional manufacturing, innovation is crucial to create new industries and the jobs of the future. The expected outcomes of this project include high-value industry intelligence in support of product diversification. This should provide significant benefits, such as increased international competitiveness, exports, revenue, and economic growth.
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Beyond the limits of corrosion detection in inaccessible areas. The project will develop a new technology for medium-range corrosion mapping in inaccessible areas of infrastructure. This will overcome the limitations of existing corrosion inspection techniques for corrosion inspection at inaccessible areas. The project will create a new concept and generate new knowledge on accurate corrosion mapping in inaccessible areas. The expected outcomes are significant improvements in the capability and ....Beyond the limits of corrosion detection in inaccessible areas. The project will develop a new technology for medium-range corrosion mapping in inaccessible areas of infrastructure. This will overcome the limitations of existing corrosion inspection techniques for corrosion inspection at inaccessible areas. The project will create a new concept and generate new knowledge on accurate corrosion mapping in inaccessible areas. The expected outcomes are significant improvements in the capability and practicability over existing corrosion inspection technologies adopted by industry for a wide range of infrastructure, in particular the Oil and Gas, Mining, Energy and Water infrastructure, as well as improving the reliability and cost-efficiency of the corrosion inspection.Read moreRead less