Optimum cross-layer design in wireless communication systems with channel uncertainty. For wireless communications to be part of Australia's information delivery infrastructure, including the National Broadband Network, requires improvements in reliability, speed and cost effectiveness over current technologies. The assembled world class research team has the objective to develop advanced design techniques to meet this challenge.
Realizable Synchronization Techniques: Unlocking the Potential of Future Wireless Networks. Wireless networks are undergoing an exciting paradigm shift from carefully planned cellular networks to heterogeneous networks (coexistence of a multitude of base stations of different types), where users may also be equipped with wireless energy harvesting capability. A fundamental requirement of these next generation technologies is the need to achieve synchronisation among the different base stations a ....Realizable Synchronization Techniques: Unlocking the Potential of Future Wireless Networks. Wireless networks are undergoing an exciting paradigm shift from carefully planned cellular networks to heterogeneous networks (coexistence of a multitude of base stations of different types), where users may also be equipped with wireless energy harvesting capability. A fundamental requirement of these next generation technologies is the need to achieve synchronisation among the different base stations and mobile users. This project will develop the fundamental theory and advanced synchronisation techniques for future wireless networks. The expected outcomes will enable wireless networks to meet the increasing demand for higher data rates and extend the battery life of mobile users, benefitting the consumers and the Australian economy.Read moreRead less
Linkage Infrastructure, Equipment And Facilities - Grant ID: LE120100215
Funder
Australian Research Council
Funding Amount
$300,000.00
Summary
Facility for characterisation of engineered microelectromechanical systems. This facility will provide Australian microelectromechanical (MEMS) researchers with a vital, world-class, capacity for characterisation of micro-machined devices and transducers, enabling them to compete internationally in this emerging field.
Place and displacement in Aboriginal Australia: a Warlpiri visual cultural enquiry. At a time of social turbulence and hyper-mobility, this project examines Aboriginal people’s transforming relationships to place. From ancestral places to the nation and beyond, it analyses how Warlpiri people of central Australia have pictured themselves in the world. Spanning sixty years of dynamic visual production, this project explores relationships between modes of governance, cultures of seeing, and Warlpi ....Place and displacement in Aboriginal Australia: a Warlpiri visual cultural enquiry. At a time of social turbulence and hyper-mobility, this project examines Aboriginal people’s transforming relationships to place. From ancestral places to the nation and beyond, it analyses how Warlpiri people of central Australia have pictured themselves in the world. Spanning sixty years of dynamic visual production, this project explores relationships between modes of governance, cultures of seeing, and Warlpiri creative practices. It uniquely blends anthropology with analytic insights from visual studies and history. Utilising rich visual materials, research outputs will include innovative exhibitions and offer fresh perspectives on protracted national debates about the future of remote Aboriginal communities.Read moreRead less