Our research work entails a wide spectrum of core electrical power engineering knowledge, including Control and Signal Processing techniques and modern Communication technologies. We welcome prospective PhD students, postdoctoral researchers, and collaborators with backgrounds or interests in integrated circuit design, sensor design, signal processing, computer vision, or machine learning. Current research topics of the group include model/controller reduction, filter design techniques, robust control and singular systems. Employers are seeking graduates who are equipped with the technical skills and knowledge to adapt to and evolve with industry developments.
As new technologies for the energy sector develop, students will be equipped to adapt and evolve alongside industry changes. For example, working in hospitals with clinicians to design and implement medical devices, or in medical device companies to create next generation healthcare solutions. Your lmct+ games career could combine your knowledge of engineering and biology to develop technologies to improve our health. A degree in Automation and Robotics Engineering will provide you with the broad multidisciplinary knowledge and skills that industry requires of people working in robotics, automation and Industry 4.0. The Power and Clean Energy (PACE) research group is devoted to the study of integrating clean energy generation systems (i.e., solar PV, wind turbine generators, fuel cell plants etc.) into power grids. The group's research is directed towards new optical techniques and applications in medicine and the life sciences, with emphasis on biomedical imaging (optical-coherence tomography, holography and multi-photon microscopy), optical biopsy (propagation of diffuse light in tissues), and the therapeutic use of lasers.
The Microelectronics Research Group (MRG) is a world-leading research and development group delivering solutions, new knowledge and education in advanced microelectronics, optoelectronics, micro-electromechanical systems (MEMS), nanotechnology, Very-large-scale integration (VLSI), photonics and microsystems technology, with particular focus on sensors in all areas. The Microelectronic Clean Room is a facility for testing and developing technology such as high-performance infrared sensors, ultraviolet sensors, high-speed and high-power electronics, microelectromechanical systems, and atmospheric electro-optic propagation. Combining relevant aspects from all software development, electronic hardware design and mechatronics, this course will cover the principles, design and operation of industrial robot manipulators as well as intelligent autonomous robots and self-driving vehicles. From your first year, you’ll be actively developing ideas and designing innovative solutions for major real-world engineering challenges. The lab focuses on intelligent mobile robots, autonomous driving, deep learning and remote vehicle control, and is home to the UWA Robotics Club.
We are interested in biomechanics (both engineering biomechanics and sport biomechanics), biomedical engineering, computer integrated surgery, medical robotics and related fields. Our mission is to work towards improving clinical outcomes through appropriate use of technology. Studying Engineering at UWA fosters curiosity and innovation while developing people to be tomorrow’s problem solvers, leaders and creative thinkers. Engineering touches on many aspects of daily life, and there’s an area for you whatever your passion, from biomedical, civil and mechanical engineering, to environmental, chemical, mining and software engineering.