Discovery Early Career Researcher Award - Grant ID: DE180100825
Funder
Australian Research Council
Funding Amount
$336,128.00
Summary
Evaluating interventions to prevent serious road traffic crashes. This project aims to advance knowledge on the prevention of road traffic crashes that result in serious injury or death. Road traffic injuries are the second leading cause of hospitalised injury and injury-related deaths in Australia, and are estimated to cost the economy $27 billion annually. This project will establish a data collection system that will evaluate existing and novel countermeasures to serious road traffic crashes. ....Evaluating interventions to prevent serious road traffic crashes. This project aims to advance knowledge on the prevention of road traffic crashes that result in serious injury or death. Road traffic injuries are the second leading cause of hospitalised injury and injury-related deaths in Australia, and are estimated to cost the economy $27 billion annually. This project will establish a data collection system that will evaluate existing and novel countermeasures to serious road traffic crashes. The outcome of this project will inform road safety policies and cost-effective countermeasures. Insights from the project can contribute to road safety improvements in Australia and a substantial reduction in the burden of fatal and non-fatal road traffic injury.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE190101276
Funder
Australian Research Council
Funding Amount
$326,150.00
Summary
Breaking patterns of violence to prevent family homicide. This project aims to quantify the relationship and interdependencies between risk factors and service utilisation among family homicide victims and offenders. These will be identified from an analysis of criminal justice and Coroners’ data on family homicide using Bayesian networks. This innovative approach will produce a model to predict the probability of a lethal outcome, and enable resources to be targeted for interventions to parties ....Breaking patterns of violence to prevent family homicide. This project aims to quantify the relationship and interdependencies between risk factors and service utilisation among family homicide victims and offenders. These will be identified from an analysis of criminal justice and Coroners’ data on family homicide using Bayesian networks. This innovative approach will produce a model to predict the probability of a lethal outcome, and enable resources to be targeted for interventions to parties identified as high risk prior to escalation that could lead to death. The knowledge from this project will help save the lives of victims, change the life course of offenders and reduce exposure to violence by other family members to break intergenerational patterns of family violence.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE180101411
Funder
Australian Research Council
Funding Amount
$366,996.00
Summary
Designing injury rehabilitation schemes for transport systems of tomorrow. This project aims to develop new models for understanding the effect of road transport system design on injury insurance, compensation and rehabilitation scheme performance. Injury rehabilitation schemes are critical facilitators of recovery for people injured in road crashes. However, rapid developments in artificial intelligence and autonomous vehicles are heralding a transportation revolution that may disrupt their per ....Designing injury rehabilitation schemes for transport systems of tomorrow. This project aims to develop new models for understanding the effect of road transport system design on injury insurance, compensation and rehabilitation scheme performance. Injury rehabilitation schemes are critical facilitators of recovery for people injured in road crashes. However, rapid developments in artificial intelligence and autonomous vehicles are heralding a transportation revolution that may disrupt their performance. The project expects to generate new knowledge for policy-makers and injury scheme managers to ensure injury schemes remain viable and perform well in the face of transport system change. It will assist injury schemes to prepare for potential challenges generated by future transport system design.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE170100819
Funder
Australian Research Council
Funding Amount
$357,000.00
Summary
Regulatory science and traumatic brain injury. This project aims to discover how governance, science and society inform the design and implementation of traumatic brain injury interventions. Brain injury has significant health, economic and societal costs. Despite breakthroughs in brain science, regulatory approaches aimed at preventing and treating brain injury vary and have disparate outcomes, even among at risk populations. By studying brain injury, this research aims to discover how inequali ....Regulatory science and traumatic brain injury. This project aims to discover how governance, science and society inform the design and implementation of traumatic brain injury interventions. Brain injury has significant health, economic and societal costs. Despite breakthroughs in brain science, regulatory approaches aimed at preventing and treating brain injury vary and have disparate outcomes, even among at risk populations. By studying brain injury, this research aims to discover how inequality affects public health interventions. Findings are expected to provide empirical insight into the challenges of establishing effective programs and how to overcome them, which can improve regulatory responses in and beyond Australia.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE210101864
Funder
Australian Research Council
Funding Amount
$442,500.00
Summary
Unlocking Urban Airspace for Drone Transport. This project aims to accurately quantify the mid-air collision risk associated with low-altitude unmanned operations in urban airspace through the creation of new data-driven collision risk modelling techniques. Without such techniques, drone operations remain suppressed so their true potential cannot be realised. The collision risk models address this by providing the key missing knowledge that can underpin/enable vital unmanned traffic management ....Unlocking Urban Airspace for Drone Transport. This project aims to accurately quantify the mid-air collision risk associated with low-altitude unmanned operations in urban airspace through the creation of new data-driven collision risk modelling techniques. Without such techniques, drone operations remain suppressed so their true potential cannot be realised. The collision risk models address this by providing the key missing knowledge that can underpin/enable vital unmanned traffic management applications, including airspace design and the development of separation standards. This can ultimately enable greater access to urban airspace without compromising air safety such that we unlock the commercial and societal benefits of drone use and help modernise urban air transportation.
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Discovery Early Career Researcher Award - Grant ID: DE200101128
Funder
Australian Research Council
Funding Amount
$399,235.00
Summary
Control and filtering of distributed systems with communication-scheduling. This project aims to develop an analysis and design framework to enhance the reliability of the next-generation advanced manufacturing systems with security vulnerability and communication scheduling. Reliable control and filtering of distributed systems is an emerging area of automation and control engineering in the tide of the 4th industrial revolution. Expected outcomes of this project include obtaining analysis crit ....Control and filtering of distributed systems with communication-scheduling. This project aims to develop an analysis and design framework to enhance the reliability of the next-generation advanced manufacturing systems with security vulnerability and communication scheduling. Reliable control and filtering of distributed systems is an emerging area of automation and control engineering in the tide of the 4th industrial revolution. Expected outcomes of this project include obtaining analysis criteria uncovering the effect from communication scheduling and cyber-attacks, and developing a novel framework based on co-design perspective to realize the distributed system design, while being applied in the cooperative control of various robots or manipulators in unmanned factories.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE120102012
Funder
Australian Research Council
Funding Amount
$375,000.00
Summary
Estimation and control algorithms over wireless networks. The use of wireless technologies in areas such as mobile communications has provided great benefits to society. Investigating estimation and control algorithms that are reliable when operating over the wireless environment will enable new technologies such as better management of Australia's water resources, and more fuel-efficient transportation.
Discovery Early Career Researcher Award - Grant ID: DE140101449
Funder
Australian Research Council
Funding Amount
$392,404.00
Summary
Robust Control and Filtering for Regulation of Flow in Implantable Rotary Blood Pumps. This project aims to derive and implement a novel, robust and non-invasive dynamical modelling, state estimation and physiological control to enable a left ventricular assist device to behave in a natural Frank-Starling like manner. The proposed multi-objective platforms will utilise sensorless feedback signals (measurements) from the left ventricular assist device to design a robust, adaptive and responsive c ....Robust Control and Filtering for Regulation of Flow in Implantable Rotary Blood Pumps. This project aims to derive and implement a novel, robust and non-invasive dynamical modelling, state estimation and physiological control to enable a left ventricular assist device to behave in a natural Frank-Starling like manner. The proposed multi-objective platforms will utilise sensorless feedback signals (measurements) from the left ventricular assist device to design a robust, adaptive and responsive control system that effectively controls the operation of the pump to meet the body's physiological needs, perturbations and to cope with changing physiological demands. This will allow, for example, heart failure patients to resume their normal daily lives and minimise the need for continuous supervision by clinical staff.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE130100879
Funder
Australian Research Council
Funding Amount
$375,000.00
Summary
Design, modelling and advanced control of high performance nanopositioners for atomic force microscopy. A high-speed nanopositioner with nanoscale manoeuvring accuracy is used extensively in nanotechnology applications such as biological cell studies and nanomanipulation. This project seeks to address fundamental problems associated with the design and control of nanopositioners, which will subsequently benefit Australian nanotechnology research.
Discovery Early Career Researcher Award - Grant ID: DE120102873
Funder
Australian Research Council
Funding Amount
$375,000.00
Summary
Securing networked control and estimation systems and safeguarding critical infrastructure. The purpose of this project is to reduce the likelihood of success, and the severity of impact, of a cyber-attack against networked control and estimation systems operating within critical infrastructure. The outcome will be a suite of algorithms, tools and design considerations for networked, industrial, control systems that satisfy this purpose.