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Field of Research : Antenna Technology
Research Topic : Broadcasting
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Antenna Technology (9)
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  • Funded Activity

    Linkage Projects - Grant ID: LP0219589

    Funder
    Australian Research Council
    Funding Amount
    $67,635.00
    Summary
    Electromagnetic field strength simulator (ELMO) for RF hazard assessment. There is significant community fear related to exposure to mobile telephone radiation. The computer program ELMO will be designed to accept information about all RF transmitters in the vicinity of cellular telephone towers from an existing database, and to calculate the total field strength. This will allow hazard assessment for both RF technicians working on the tower and adjacent residents.
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    Funded Activity

    Discovery Projects - Grant ID: DP0452151

    Funder
    Australian Research Council
    Funding Amount
    $150,000.00
    Summary
    Channel Adaptive Space-Time (CAST) Coding and Processing for Wireless Downlink Packet Services. Recently, the capacity of the broadcast channel with multiple antennas is investigated. Various space-time (ST) processing techniques to adapt channel conditions are utilized to increase capacity. Precoding becomes vital to deal with interferers and cooperation problems efficiently. ST codes will be investigated in conjunction with precoding. We aim to investigate channel adaptive ST coding and precod .... Channel Adaptive Space-Time (CAST) Coding and Processing for Wireless Downlink Packet Services. Recently, the capacity of the broadcast channel with multiple antennas is investigated. Various space-time (ST) processing techniques to adapt channel conditions are utilized to increase capacity. Precoding becomes vital to deal with interferers and cooperation problems efficiently. ST codes will be investigated in conjunction with precoding. We aim to investigate channel adaptive ST coding and precoding techniques to achieve the maximum capacity with practical quality of service requirements. Although the capacity is extensively investigated, implementation methods are relatively less investigated. This project is to fill the cap between implementation (ST coding and precoding methods as outcomes) and theory (capacity analysis).
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    Funded Activity

    Discovery Projects - Grant ID: DP0450118

    Funder
    Australian Research Council
    Funding Amount
    $142,800.00
    Summary
    Demonstrating Advantages of Smart Antennas in Indoor Wireless Communications Systems. The performance of indoor wireless communications systems is adversely affected by multi-path signal propagation. When the received signal drops below a certain level, the usual practice is that the receiving station requests the transmitting device to increase its output power. An adverse effect of this action is a reduced life of battery of a portable transceiver, more power being radiating towards users and .... Demonstrating Advantages of Smart Antennas in Indoor Wireless Communications Systems. The performance of indoor wireless communications systems is adversely affected by multi-path signal propagation. When the received signal drops below a certain level, the usual practice is that the receiving station requests the transmitting device to increase its output power. An adverse effect of this action is a reduced life of battery of a portable transceiver, more power being radiating towards users and an increase of interference. The aim of this project is to demonstrate an alternative method of maintaining good quality communication link. The proposed method employs a smart antenna system to mitigate adverse effects of multi-path and interference.
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    Funded Activity

    Discovery Projects - Grant ID: DP0343804

    Funder
    Australian Research Council
    Funding Amount
    $162,536.00
    Summary
    System Theoretical Aspects of Spatial Signal Processing. The aims of the project is to gain better understanding of spatial characteristics of wireless communication channels; and to apply spatial signal processing theory to design receivers for wireless systems. The expected outcomes of the projects are new system theory for spatial signal processing, a new spatial model to characterize wireless communication channels, categorize a relationship between scattering environment antenna spacing and .... System Theoretical Aspects of Spatial Signal Processing. The aims of the project is to gain better understanding of spatial characteristics of wireless communication channels; and to apply spatial signal processing theory to design receivers for wireless systems. The expected outcomes of the projects are new system theory for spatial signal processing, a new spatial model to characterize wireless communication channels, categorize a relationship between scattering environment antenna spacing and multi-element antenna system capacity, and novel use of multiple antennas to improve the performance of wireless systems. Success in this investigation could have wide applications in the development of future mobile and fixed wireless communication systems.
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    Funded Activity

    Linkage Projects - Grant ID: LP0669812

    Funder
    Australian Research Council
    Funding Amount
    $73,950.00
    Summary
    Investigation into improved wireless communication for rural and regional Australia. The project will improve the performance of wireless communications allowing better and more accessible communication throughout rural and regional Australia. This will enable a more efficient communications as it will reduce the requirements of cables.
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    Funded Activity

    Linkage Projects - Grant ID: LP0989652

    Funder
    Australian Research Council
    Funding Amount
    $610,000.00
    Summary
    Printable Multi-Bit Radio Frequency Identification for Banknotes. This project will investigate inexpensive radio-frequency transponders on banknotes that enjoy all of the advantages of, and, indeed, operate in a manner somewhat similar to barcodes. Transponders of this type may potentially replace barcode technology, thereby allowing automated identification of individual banknotes at multiple points in transaction chains. The resulting efficiencies in banknote authentication and other applic .... Printable Multi-Bit Radio Frequency Identification for Banknotes. This project will investigate inexpensive radio-frequency transponders on banknotes that enjoy all of the advantages of, and, indeed, operate in a manner somewhat similar to barcodes. Transponders of this type may potentially replace barcode technology, thereby allowing automated identification of individual banknotes at multiple points in transaction chains. The resulting efficiencies in banknote authentication and other applications will generate a significant economic benefit for Australia. Additionally, the development of state-of-the-art transponders based on fundamental microwave- and antenna engineering prospectively gives Australia a cutting-edge advantage as a leading player in the fast-growing RFID market.
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    Funded Activity

    Discovery Projects - Grant ID: DP0665523

    Funder
    Australian Research Council
    Funding Amount
    $392,000.00
    Summary
    Chipless RFID for Barcode Replacement. This project will investigate inexpensive radio-frequency transponders that enjoy all of the advantages of, and, indeed, operate in a manner somewhat similar to barcodes. Transponders of this type may potentially replace barcode technology, thereby allowing automated identification of individual items at multiple points in supply- and distribution chains. The resulting efficiencies in a host of logistic and other applications will generate a significant e .... Chipless RFID for Barcode Replacement. This project will investigate inexpensive radio-frequency transponders that enjoy all of the advantages of, and, indeed, operate in a manner somewhat similar to barcodes. Transponders of this type may potentially replace barcode technology, thereby allowing automated identification of individual items at multiple points in supply- and distribution chains. The resulting efficiencies in a host of logistic and other applications will generate a significant economic benefit for Australia. Additionally, the development of state-of-the-art transponders based on fundamental microwave- and antenna engineering prospectively gives Australia a cutting-edge advantage as a leading player in the fast-growing RFID market.
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    Funded Activity

    Linkage Projects - Grant ID: LP0991435

    Funder
    Australian Research Council
    Funding Amount
    $395,000.00
    Summary
    Back-scatter based Radio Freqency IDentification (RFID) system capable of reading multiple chipless tags for regional and suburban libraries. Australia has the highest rate of library usage among the developed countries. However, only a few libraries in Australia use RFID based library management system. The main hindrance is the cost of the tag compared to the optical barcode. The project addresses the problem by offer a smart RFID reader which can read multiple chipless RFID tags. The results .... Back-scatter based Radio Freqency IDentification (RFID) system capable of reading multiple chipless tags for regional and suburban libraries. Australia has the highest rate of library usage among the developed countries. However, only a few libraries in Australia use RFID based library management system. The main hindrance is the cost of the tag compared to the optical barcode. The project addresses the problem by offer a smart RFID reader which can read multiple chipless RFID tags. The results of the project will bring Australia on a cutting edge technology and serving the community better with state-of-the-art RFID based library management system. Also export of the technology will put Australia in the forefront of the RFID applications.
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    Funded Activity

    Linkage Projects - Grant ID: LP0989355

    Funder
    Australian Research Council
    Funding Amount
    $334,000.00
    Summary
    Smart Information Management of Partial Discharge in Switchyards using Smart Antennas. Currently no single robust technology for partial discharge (PD) detection, location and unique identification of faulty power apparatus is commercially available. The proposed method will bring a new technological breakthrough in the market for PD monitoring, management and prevention. On-line real time fault detection and monitoring system of expensive power installations will save significant revenue for po .... Smart Information Management of Partial Discharge in Switchyards using Smart Antennas. Currently no single robust technology for partial discharge (PD) detection, location and unique identification of faulty power apparatus is commercially available. The proposed method will bring a new technological breakthrough in the market for PD monitoring, management and prevention. On-line real time fault detection and monitoring system of expensive power installations will save significant revenue for power industries in Australia and worldwide. This real time monitoring system will also give Australia a leading edge technological advantage over overseas competitors.
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