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Research Topic : interdisciplinary
Field of Research : Communications Technologies
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Communications Technologies (7)
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  • Researchers (48)
  • Funded Activities (7)
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  • Active Funded Activity

    Australian 3D Beam Measurement Platform From Radio Waves To Terahertz Waves.

    Funder
    Australian Research Council
    Funding Amount
    $520,000.00
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    Funded Activity

    Linkage Projects - Grant ID: LP0234466

    Funder
    Australian Research Council
    Funding Amount
    $67,635.00
    Summary
    Telematics: Research & Development of Mobile Link for Telemedicine. This project is aimed at producing a reliable mobile video link between ambulance and hospital. In an emergency situation, video footage greatly assists the medical team in accurate deployment of resources to save lives. Motorola will be the industrial partner and this mobile telemedicine project fits into their telematics core business area. Together with Motorola, we will investigate video coding schemes, protocols and network .... Telematics: Research & Development of Mobile Link for Telemedicine. This project is aimed at producing a reliable mobile video link between ambulance and hospital. In an emergency situation, video footage greatly assists the medical team in accurate deployment of resources to save lives. Motorola will be the industrial partner and this mobile telemedicine project fits into their telematics core business area. Together with Motorola, we will investigate video coding schemes, protocols and network issues, to produce a commercially viable software/hardware solution. The outcome will be a working testbed that can be trialed at the Royal Adelaide Hospital. The IP generated will benefit Motorola's telematics directive and training will generate a potentially useful future employee.
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    Funded Activity

    Linkage Projects - Grant ID: LP0990871

    Funder
    Australian Research Council
    Funding Amount
    $260,000.00
    Summary
    The photonic immunochip: retrieving individual Enzyme-linked Immuno Sorbent Assay (ELISA) array-units using optical waveguide multicolour fluorescence. Improving the sensitivity and availability of in-vitro immuno-diagnostic tests is a critical goal towards developing real time efficient tools for the detection of infectious diseases, cancers, allergies and auto-immune diseases. The goal is to increase the sensitivity of these tests by reducing background noise that has been a feature of the com .... The photonic immunochip: retrieving individual Enzyme-linked Immuno Sorbent Assay (ELISA) array-units using optical waveguide multicolour fluorescence. Improving the sensitivity and availability of in-vitro immuno-diagnostic tests is a critical goal towards developing real time efficient tools for the detection of infectious diseases, cancers, allergies and auto-immune diseases. The goal is to increase the sensitivity of these tests by reducing background noise that has been a feature of the commonly used ELISA technology. This will be achieved by developing a novel optical integrated waveguide array supporting a large range of distributed tests, including several based on a novel multi-colour detection scheme. This massively parallel approach will underpin a new generation of low-cost, efficient diagnostic tests.
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    Funded Activity

    Discovery Projects - Grant ID: DP1097108

    Funder
    Australian Research Council
    Funding Amount
    $180,000.00
    Summary
    New multiplexed optical read-out technologies for micromachined cantilever sensor arrays. Passive sensing of chemical and biological agents is an essential capability in fields as diverse as national security, agriculture, mining and medicine. In many cases, generic sensing (e.g. are there pesticides present) as well as specific sensing (which pesticide) are both important. While sensors based on micro-electromechanical systems (MEMS) have shown extremely high performance at low cost, they have .... New multiplexed optical read-out technologies for micromachined cantilever sensor arrays. Passive sensing of chemical and biological agents is an essential capability in fields as diverse as national security, agriculture, mining and medicine. In many cases, generic sensing (e.g. are there pesticides present) as well as specific sensing (which pesticide) are both important. While sensors based on micro-electromechanical systems (MEMS) have shown extremely high performance at low cost, they have been limited to detection of a specific substance. Success in this project will make low cost generic MEMS-based sensors a reality, allowing, for the first time, wide-spread use of sensitive sensing systems in applications such as farming, container transport security, general medical practice and national security.
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    Funded Activity

    Discovery Projects - Grant ID: DP0666656

    Funder
    Australian Research Council
    Funding Amount
    $355,000.00
    Summary
    Complex Dopant Diffusivity in Photonic Crystal Fibres and Applications. The outcomes of this research in the area of doped photonic crystal fibres will enable Australia to commercialise the technology and provide an opportunity for leading commercial ventures using novel doped PCF. These opportunities will eventually become large-scale industrial activities developed from the research in fields such as sensing, biophotonics, medical and defence and will result in significant economic benefit for .... Complex Dopant Diffusivity in Photonic Crystal Fibres and Applications. The outcomes of this research in the area of doped photonic crystal fibres will enable Australia to commercialise the technology and provide an opportunity for leading commercial ventures using novel doped PCF. These opportunities will eventually become large-scale industrial activities developed from the research in fields such as sensing, biophotonics, medical and defence and will result in significant economic benefit for Australia. Fundamental research outcomes in glass and dopants that can boost devices and introduce novel devices resulting from this project will contribute to all National Research Priorities.
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    Funded Activity

    Discovery Projects - Grant ID: DP0879291

    Funder
    Australian Research Council
    Funding Amount
    $400,000.00
    Summary
    A Green Internet - telecommunications technologies and their environmental impact. This project will solve problems of direct importance to Australia and the wider international community. It will enable continued growth of broadband Internet services in Australia and elsewhere, while minimizing the environmental impact of this growth. The project will significantly advance Australia's participation in Information and Communications industries through an increase in the knowledge and skills ba .... A Green Internet - telecommunications technologies and their environmental impact. This project will solve problems of direct importance to Australia and the wider international community. It will enable continued growth of broadband Internet services in Australia and elsewhere, while minimizing the environmental impact of this growth. The project will significantly advance Australia's participation in Information and Communications industries through an increase in the knowledge and skills base in telecommunications technologies and their environmental impact. The outcomes of the research will be in technologies that are well-matched to the needs and interests of Australian companies.
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    Funded Activity

    Discovery Projects - Grant ID: DP0344929

    Funder
    Australian Research Council
    Funding Amount
    $449,000.00
    Summary
    Characterisation of soldered and adhesively bonded assemblies in photonic packages. Photonic packaging plays key roles in development of new optical technology. The project aims to establish the theories and techniques for characterising the integrity of soldered and adhesively bonded assemblies for photonic packaging. The critical failure mechanisms will be investigated, and sophisticated life prediction models will be established using artificial neural network (ANN) approaches for reliability .... Characterisation of soldered and adhesively bonded assemblies in photonic packages. Photonic packaging plays key roles in development of new optical technology. The project aims to establish the theories and techniques for characterising the integrity of soldered and adhesively bonded assemblies for photonic packaging. The critical failure mechanisms will be investigated, and sophisticated life prediction models will be established using artificial neural network (ANN) approaches for reliability assessment. The outcomes of the project will fill the gap in the knowledge for characterising failure processes of these assemblies and provide effective methods and easy-to-use guidelines for reliability evaluation and life prediction of photonic packages, expanding and enhancing Australia's capacity in the areas.
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    Showing 1-7 of 7 Funded Activites

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