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Socio-Economic Objective : Air transport
Field of Research : Sensory Processes, Perception And Performance
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  • Funded Activity

    Linkage Projects - Grant ID: LP0455275

    Funder
    Australian Research Council
    Funding Amount
    $100,000.00
    Summary
    Cognitive Cue Analysis: Seeing the Unseen in Human Performance. The aim of this project is to examine a radically new approach to the assessment of pilots. We have created a new theoretical model that links the way in which cues are accessed to the application of various skills including decision-making. In validating this model, our objective is to develop a tool that will assist the evaluation of particular skills in a wide range of environments, including aviation. This significance of this p .... Cognitive Cue Analysis: Seeing the Unseen in Human Performance. The aim of this project is to examine a radically new approach to the assessment of pilots. We have created a new theoretical model that links the way in which cues are accessed to the application of various skills including decision-making. In validating this model, our objective is to develop a tool that will assist the evaluation of particular skills in a wide range of environments, including aviation. This significance of this project lies in the development of an innovative model of the relationship between between cues and the application of skills. We expect that the outcomes of this project will lead to much more efficient and accurate assessments of performance, and the opportunity to target particular skills. This will lead to savings for training organisations and increased safety in transportation industries.
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    Funded Activity

    Discovery Projects - Grant ID: DP0666772

    Funder
    Australian Research Council
    Funding Amount
    $900,000.00
    Summary
    A Scalable Theory of Behavior Composition for Practical Engineering Models of Human Performance. Minimizing human error and maximizing human performance is a major design goal in safety critical systems. The development of methods for affordable human performance modeling has widespread applicability for evaluating user-system interfaces. The compositional method explored here has been shown to make accurate predictions reduce model development time by an order of magnitude. Large safety critica .... A Scalable Theory of Behavior Composition for Practical Engineering Models of Human Performance. Minimizing human error and maximizing human performance is a major design goal in safety critical systems. The development of methods for affordable human performance modeling has widespread applicability for evaluating user-system interfaces. The compositional method explored here has been shown to make accurate predictions reduce model development time by an order of magnitude. Large safety critical applications, such as military or air traffic control systems, would benefit greatly. The proposed work tests whether the compositional methods will scale to more complex domains. The work will be coordinated with Australian industry, academia, and government research efforts.
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    Funded Activity

    Discovery Projects - Grant ID: DP0665402

    Funder
    Australian Research Council
    Funding Amount
    $255,000.00
    Summary
    Functional Assessment of Head-eye Coordination during Driving. 238 people per 100,000 population were hospitalized and 9 people per 100,000 died as a result of road-transport related injury in Australia in 2002. We will address this issue by assessing the head eye coordination strategies for young drivers, for proficient drivers and for aged drivers to determine those behaviors and strategies that are associated with various levels of performance. This insight could be affectively communicated t .... Functional Assessment of Head-eye Coordination during Driving. 238 people per 100,000 population were hospitalized and 9 people per 100,000 died as a result of road-transport related injury in Australia in 2002. We will address this issue by assessing the head eye coordination strategies for young drivers, for proficient drivers and for aged drivers to determine those behaviors and strategies that are associated with various levels of performance. This insight could be affectively communicated to others and would provide the basis for educational material and methods that would improve operator skill, safety, and performance. These individual improvements would provide overall benefits such as improved transport efficiency, reduced accident rates, saved lives and a reduction in related social costs.
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    Funded Activity

    Discovery Projects - Grant ID: DP0772398

    Funder
    Australian Research Council
    Funding Amount
    $135,000.00
    Summary
    Identification and Examination of Visual Cues for Aircraft Glideslope Control. While aviation safety has improved dramatically over the last 50 years, accidents are still more common during landing than any other stage of flight. This project aims to improve our understanding of the way pilots use visual information to land an aircraft. Once our findings have been incorporated into existing training programs, this much-needed information should result in: (i) reduced pilot training time and cost .... Identification and Examination of Visual Cues for Aircraft Glideslope Control. While aviation safety has improved dramatically over the last 50 years, accidents are still more common during landing than any other stage of flight. This project aims to improve our understanding of the way pilots use visual information to land an aircraft. Once our findings have been incorporated into existing training programs, this much-needed information should result in: (i) reduced pilot training time and cost; (ii) increased trainee pilot safety and confidence; and (iii) reduced aircraft maintenance costs. A PhD student, who will be trained in visual perception and aviation, should contribute significantly to future aviation research in this country.
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    Funded Activity

    Linkage Projects - Grant ID: LP0214128

    Funder
    Australian Research Council
    Funding Amount
    $326,354.00
    Summary
    How tired is too tired? Determining the effects of fatigue on pilots' performance in a simulated flight environment. Increasingly, pilots are required to work more flexible flight schedules that expose them to greater levels of work-related fatigue. Consequently, a recent federal parliamentary inquiry recommended that a fatigue risk management approach be applied to the regulation of pilots? flight and duty times. A key aspect of such an approach, and the aim of the proposed project, is to det .... How tired is too tired? Determining the effects of fatigue on pilots' performance in a simulated flight environment. Increasingly, pilots are required to work more flexible flight schedules that expose them to greater levels of work-related fatigue. Consequently, a recent federal parliamentary inquiry recommended that a fatigue risk management approach be applied to the regulation of pilots? flight and duty times. A key aspect of such an approach, and the aim of the proposed project, is to determine the level of fatigue at which pilots? ability to operate an aircraft reaches a safety-critical level. This research will provide a scientifically validated benchmark for regulating pilots? flight and duty times. Ultimately, this will improve safety for the flying public.
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