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Hot-swappable and High-efficient Grid-connected Power Electronics System for Photovoltaic Modules

This project involves the analysis of hot-swappable and high-efficient grid-connected power electronics system for photovoltaic modules. more...

Supervisor(s): Lu, Dylan (Associate Professor)

High Efficient Switching Power Supplies Design for High-Brightness LEDs lighting

This project will involve analysis, design, simulation and practical implementation of the proposed power converters. more...

Supervisor(s): Lu, Dylan (Associate Professor)

Microscopic Origin of Ferromagnetism in Diluted Magnetic Semiconductors

This project aims to understand the microscopic origin of ferromagnetism in Diluted Magnetic Semiconductors, and to direct the fabrication of high quality Diluted Magnetic Semicondu more...

Supervisor(s): Zheng, Rongkun (Associate Professor)

Medical diagnostics for neonates in the developing world

There is an urgent clinical need to develop diagnostic devices to assess the health of newborns. For example the World Health Organisation estimates that malnutrition contributes to more...

Supervisor(s): McEwan, Alistair (Professor), Jin, Craig (Associate Professor), Leong, Philip (Professor)

Electrical Impedance Tomography for stroke, biophysical monitoring and medical device design

This project will involve simulation and test of an impedance spectroscopy device using electrical impedance models and saline based phantoms for its applicability in monitoring str more...

Supervisor(s): McEwan, Alistair (Professor), Jin, Craig (Associate Professor), Leong, Philip (Professor)

Impedance tomography for cardiac imaging: high speed tomography

This project will involve the development of a high speed 3D Electrical Impedance Tomography device for chest imaging to determine pulmonary and cardiac function. more...

Supervisor(s): McEwan, Alistair (Professor), Jin, Craig (Associate Professor), Leong, Philip (Professor)

Novel Electrodes for rapid electrophysiological recording

Rapid monitoring of emergencies including heart attack and stroke are limited by electrode movements.  This project aims at using a range of methods to improve electrodes inclu more...

Supervisor(s): McEwan, Alistair (Professor), Jin, Craig (Associate Professor), Leong, Philip (Professor)

Implant electrode optimisation and neurolinguistics

The benefit provided by additional electrodes in medical implants is currently unknown. A typical cochlear implant only contains 12-22 electrodes to stimulate about 30,000 more...

Supervisor(s): McEwan, Alistair (Professor)

Subdivided electrodes to improve defibrillators and physiological measurements

Current defibrillators and physiological monitors (EEG, ECG etc) are limited by variations in contact impedance. This makes measurements difficult during movement of the subjec more...

Supervisor(s): McEwan, Alistair (Professor)

Single walled carbon nanotube chirality control

Design novel catalysts to control the chirality of single walled carbon nanotubes more...

Supervisor(s): Chen, Yuan (Professor)