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Research Topic : Processor Modules
Field of Research : Integrated Circuits
Australian State/Territory : NSW
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Processor Architectures (3)
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  • Funded Activity

    Discovery Projects - Grant ID: DP0986091

    Funder
    Australian Research Council
    Funding Amount
    $325,000.00
    Summary
    Design Automation for Processor Pipelines. Embedded system processors comprise about eighty percent of the processor market. This project targets this particular segment, customising multi-processor system on chips for a particular class of embedded applications, resulting in superior performance, low power and reduced cost. Direct benefits will include clear understanding of architectures and algorithms, research training, better processors for the embedded market, and quality publications. Ind .... Design Automation for Processor Pipelines. Embedded system processors comprise about eighty percent of the processor market. This project targets this particular segment, customising multi-processor system on chips for a particular class of embedded applications, resulting in superior performance, low power and reduced cost. Direct benefits will include clear understanding of architectures and algorithms, research training, better processors for the embedded market, and quality publications. Indirect benefits will be commercialisation and licensing of this technology for use in the embedded systems design industry. Companies which can benefit from this technology exist in Australia and overseas.
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    Funded Activity

    Discovery Projects - Grant ID: DP0559880

    Funder
    Australian Research Council
    Funding Amount
    $263,000.00
    Summary
    Automatic Co-Processor Synthesis for Application Specific Instruction Set Processors. Embedded system processors comprise of about eighty percent of the processor market. This project targets this particular segment, customising processors for a particular embedded application, resulting in superior performance, low power and reduced cost. Direct benefits will include clear understanding of architectures and algorithms, research training, better processors for the embedded market, and quality .... Automatic Co-Processor Synthesis for Application Specific Instruction Set Processors. Embedded system processors comprise of about eighty percent of the processor market. This project targets this particular segment, customising processors for a particular embedded application, resulting in superior performance, low power and reduced cost. Direct benefits will include clear understanding of architectures and algorithms, research training, better processors for the embedded market, and quality publications. Indirect benefits will be commercialisation and licensing of this technology for use in the processor design industry.
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    Funded Activity

    Discovery Projects - Grant ID: DP0664117

    Funder
    Australian Research Council
    Funding Amount
    $396,000.00
    Summary
    Reliable Truly Deep Sub-micron VLSI Computational Systems. The phenomenal growth of the digital integrated circuits is founded on the fundamental assumption of reliable operation of logic gates on silicon chip. In the Deep Sub-Micron domain this fundamental assumption can no longer be guaranteed. This project, in association with with Dongshin University, Korea with strong links to the semiconductor industry, will develop design techniques for the reliable computational hardware, in the presence .... Reliable Truly Deep Sub-micron VLSI Computational Systems. The phenomenal growth of the digital integrated circuits is founded on the fundamental assumption of reliable operation of logic gates on silicon chip. In the Deep Sub-Micron domain this fundamental assumption can no longer be guaranteed. This project, in association with with Dongshin University, Korea with strong links to the semiconductor industry, will develop design techniques for the reliable computational hardware, in the presence of unreliable circuit fabric. This significant research, with potential for generation of IP, will raise the profile of Australian research in integrated circuits design in the global community and will result in significant publicity for the research team and, through them, for Australian industry.
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    Funded Activity

    Discovery Projects - Grant ID: DP0209890

    Funder
    Australian Research Council
    Funding Amount
    $254,097.00
    Summary
    Hardware Implementation Strategies for JPEG 2000. JPEG2000 is a new image compression standard, which is expected to become the dominant format for image communications over the internet and then make inroads into consumer peripheral devices, including digital cameras, printers and scanners. The standard is fundamentally different from and much more complex than its well-known predecessor, JPEG, and there are currently no published hardware implementations. The aim of this project is to investig .... Hardware Implementation Strategies for JPEG 2000. JPEG2000 is a new image compression standard, which is expected to become the dominant format for image communications over the internet and then make inroads into consumer peripheral devices, including digital cameras, printers and scanners. The standard is fundamentally different from and much more complex than its well-known predecessor, JPEG, and there are currently no published hardware implementations. The aim of this project is to investigate a wide range of potential implementation strategies to identify those which are able to minimize the consumption of various resources, including memory consumption, memory bandwidth, chip area and processing latency.
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    Funded Activity

    Discovery Projects - Grant ID: DP0881219

    Funder
    Australian Research Council
    Funding Amount
    $645,000.00
    Summary
    Electronic Auditory Pathway. We will develop electronic building blocks to investigate biological signal processing. In particular, we will investigate the auditory pathway and develop the most accurate electronic model of the biological cochlea and auditory nerve. These will be followed by electronic circuits that model the processing of sensory signals in the brain. Processing signals with neural spikes offers distinct advantages over current analogue and digital signal processing techniques i .... Electronic Auditory Pathway. We will develop electronic building blocks to investigate biological signal processing. In particular, we will investigate the auditory pathway and develop the most accurate electronic model of the biological cochlea and auditory nerve. These will be followed by electronic circuits that model the processing of sensory signals in the brain. Processing signals with neural spikes offers distinct advantages over current analogue and digital signal processing techniques in terms of noise, energy consumption and extraction of temporal information. We will implement the first spike-based models of pitch and timbre perception, and a neural model of speech recognition in noisy environments.
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