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Field of Research : Image Processing
Australian State/Territory : NSW
Research Topic : STORAGE
Status : Closed
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  • Funded Activity

    Discovery Projects - Grant ID: DP0209541

    Funder
    Australian Research Council
    Funding Amount
    $160,500.00
    Summary
    Content-based image retrieval using interactive feedback. Storage and retrieval of visual information plays an important role in multimedia systems. We aim to develop a method to retrieve images and visual information from multimedia databases and multimedia systems. The method will go beyond simple similarity search to retrieval data on knowledge by accommodating knowledge acquisition and sequential learning techniques, and will be able to handle complex queries with partial information. The .... Content-based image retrieval using interactive feedback. Storage and retrieval of visual information plays an important role in multimedia systems. We aim to develop a method to retrieve images and visual information from multimedia databases and multimedia systems. The method will go beyond simple similarity search to retrieval data on knowledge by accommodating knowledge acquisition and sequential learning techniques, and will be able to handle complex queries with partial information. The technology developed will find many applications in the multimedia area such as education, medical imaging, desktop publishing, advertising, business presentation, and engineering design.
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    Funded Activity

    Discovery Projects - Grant ID: DP0559647

    Funder
    Australian Research Council
    Funding Amount
    $211,000.00
    Summary
    A scheme and a formal language for interactive video. Video has been increasingly used in many fields and plays an important role in our daily life. Most traditional video players and video formats only provide linear interaction, such as play, fast forward, fast backward or jump to a certain frame of a video stream indicated by a sequence or time on a random access device. This project aims at enabling a hyperlink type of interactions for video data through the development of video interaction .... A scheme and a formal language for interactive video. Video has been increasingly used in many fields and plays an important role in our daily life. Most traditional video players and video formats only provide linear interaction, such as play, fast forward, fast backward or jump to a certain frame of a video stream indicated by a sequence or time on a random access device. This project aims at enabling a hyperlink type of interactions for video data through the development of video interaction mark-up language (VIML). It can find many applications in education, marketing, web presentation and digital TV.
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    Funded Activity

    Discovery Projects - Grant ID: DP0453003

    Funder
    Australian Research Council
    Funding Amount
    $281,400.00
    Summary
    Highly Scalable Video Compression with Finely Embedded Motion Signalling. Highly scalable video compression is critical to the emergence of new applications in video distribution and management. Examples include interactive remote browsing of video and robust video surveillance over shared networks. Previous ARC funding produced fundamental breakthroughs in scalable video compression, resulting in a new paradigm which has been adopted by leading researchers in the field. The present project a .... Highly Scalable Video Compression with Finely Embedded Motion Signalling. Highly scalable video compression is critical to the emergence of new applications in video distribution and management. Examples include interactive remote browsing of video and robust video surveillance over shared networks. Previous ARC funding produced fundamental breakthroughs in scalable video compression, resulting in a new paradigm which has been adopted by leading researchers in the field. The present project addresses the two most important problems which currently limit the potential of this paradigm. Inspired by the applicant's recent discoveries, the outcomes of this project are likely to represent significant scientific breakthroughs and contribute to a new international video coding standard.
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    Funded Activity

    Discovery Projects - Grant ID: DP1096665

    Funder
    Australian Research Council
    Funding Amount
    $376,000.00
    Summary
    Non-Parametric Modelling of Motion and Depth fields with Boundary Geometry for Scalable Compression and Dissemination. Applications for large format video surveillance are about to grow rapidly, starting with military applications and then moving into the civilian arena, highlighting the importance of compression for interactive dissemination, so as to make best use of limited communication channels. This project will develop an innovative representation for motion and depth/elevation maps, whi .... Non-Parametric Modelling of Motion and Depth fields with Boundary Geometry for Scalable Compression and Dissemination. Applications for large format video surveillance are about to grow rapidly, starting with military applications and then moving into the civilian arena, highlighting the importance of compression for interactive dissemination, so as to make best use of limited communication channels. This project will develop an innovative representation for motion and depth/elevation maps, which addresses a key obstacle in the deployment of technology for efficient interactive access to large format video and geospatial imagery. These applications are relevant to Australia's defence and infrastructure for smart information use. Moreover, this is a strategic proposal to strengthen Australia's existing lead in aspects of interactive media dissemination.
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    Funded Activity

    Discovery Projects - Grant ID: DP120102071

    Funder
    Australian Research Council
    Funding Amount
    $320,000.00
    Summary
    Compression and communication of single and multi-view video based on overlapping motion hint fields. This project explores a new way of communicating motion for video and multi-view (3D) applications, facilitating efficient interactive access to content. Outcomes will include new compression methods that avoid redundant transmission of motion side information, plus client/server technology that leverages metadata from smart surveillance cameras.
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    Funded Activity

    Linkage Projects - Grant ID: LP0667490

    Funder
    Australian Research Council
    Funding Amount
    $650,000.00
    Summary
    Data Management Technologies for the Magnetic Resonance Imaging e-Research Grid. Howard Florey Institute researchers will collaborate with SGI's file-systems engineering team. Substantial benefits are expected from the development of techniques to support centralized and distributed processing medical image datasets. Issues requiring research include file space allocation algorithms and caching strategies. The proposed rapid database access technologies aim at solving these problems in the medic .... Data Management Technologies for the Magnetic Resonance Imaging e-Research Grid. Howard Florey Institute researchers will collaborate with SGI's file-systems engineering team. Substantial benefits are expected from the development of techniques to support centralized and distributed processing medical image datasets. Issues requiring research include file space allocation algorithms and caching strategies. The proposed rapid database access technologies aim at solving these problems in the medical imaging research context. The project attempts to 'improve data management for existing and new business applications'. This enhanced sharing of information will improve critical mass therefore fostering national and international collaboration.
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    Funded Activity

    Discovery Projects - Grant ID: DP0987072

    Funder
    Australian Research Council
    Funding Amount
    $876,000.00
    Summary
    Snap, Crackle, Pop: Opening the Window on the Variable Radio Universe. Time variability is a frontier of discovery in astronomy. We will conduct a comprehensive set of surveys with new radio telescopes and instruments in order to build a full census of bursts, pulses, and flickers in the radio sky. Coupled with rapid follow up observations in the optical, X-ray and gamma-ray bands, these surveys will allow us to probe fundamental physics behind violent and unpredictable behaviour in the Universe .... Snap, Crackle, Pop: Opening the Window on the Variable Radio Universe. Time variability is a frontier of discovery in astronomy. We will conduct a comprehensive set of surveys with new radio telescopes and instruments in order to build a full census of bursts, pulses, and flickers in the radio sky. Coupled with rapid follow up observations in the optical, X-ray and gamma-ray bands, these surveys will allow us to probe fundamental physics behind violent and unpredictable behaviour in the Universe. Our techniques, pipelines, and algorithms will serve as stepping stones for future experiments, and will also have wide applicability to searches for weak signals in noisy data in areas including physics, ecology, medical science, and economics.
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    Funded Activity

    Discovery Projects - Grant ID: DP140104027

    Funder
    Australian Research Council
    Funding Amount
    $405,000.00
    Summary
    Interactive and scalable media over software defined networks. A novel API and associated algorithms will be developed to exploit the emerging technology of software defined networks (SDN) for improving the efficiency and responsiveness of interactive media browsing applications. The approach applies to conventional streaming video as well as more interactive services based on scalable media compression and communication technology, notably JPIP (IS15444-9) video. Recent advances in motion codin .... Interactive and scalable media over software defined networks. A novel API and associated algorithms will be developed to exploit the emerging technology of software defined networks (SDN) for improving the efficiency and responsiveness of interactive media browsing applications. The approach applies to conventional streaming video as well as more interactive services based on scalable media compression and communication technology, notably JPIP (IS15444-9) video. Recent advances in motion coding will be combined with new spatio-temporal transforms to develop an efficient inter-frame extension to the JPEG 2000 standard that is fully compatible with JPIP. Each of these innovations is important in its own right, but together they will facilitate a highly compelling interactive media browsing experience.
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    Showing 1-8 of 8 Funded Activites

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