Innovation
Be part of a high energy team, while exploring new ways of doing things through innovative approaches.
Advanced Ultrasound Tweezers
This project aims to develop the next generation of acoustic tweezers with moving parts that allow controlled rotation, translation, and flexural motion of micro-objects, ranging from polystyrene beads to microbeams or insects’ parts (thin elastic structures).
Brain Robot Interface
This project is to build on responses in the human brain when a robot does not operate in a way the human expects and build an innovative brain-robot interface.
Benchmarking Single-Cell Transcriptomics
Using several single-cell RNAseq datasets of breast cancer generated in the lab; this project aims to compare different computational approaches to extract biologically meaningful data and visualise various features to annotate and functionally characterise tumour cell diversity.
Design of Bio-Informed Hexapodic Devices
During emergencies, rescue teams often need to evaluate the situation by investigating dangerous or confined spaces. It is clear that accessing these places can be high risk task.
Fairness in Deep Learning
Deep learning has significantly improved classification accuracy for supervised image recognition tasks. However, these tremendous performances are reported on test-sets which are drawn from distribution identical to their training datasets.
Imaging Profiling Platform
Platelets play a crucial role in blood clot formation, causing heart attack and thrombotic disease, the number 1 killer in Australia.
Lithium-Ion Batteries
This project aims to develop lithium-rich cathode materials for a new generation of high-energy lithium-ion batteries. These innovative materials could double the capacity of commercial cathodes, thereby doubling the energy density of lithium-ion batteries.
Multizone Sound Field Reproduction
Multizone sound field reproduction aims to generate independent virtual zones for multiple listeners to enjoy their own music/audio content in a shared physical space without the sound fields interfering with each other.
Rapido Commercial
UTS Rapido is a University-embedded innovation unit that works with internal and external partners to unlock access to world-leading technology expertise and develop cutting-edge products and services in order to generate real business and community impact.
Rapido Social
Rapido Social offers a number of internship opportunities for advanced students (in their final year of engineering studies) to work on humanitarian engineering projects across mechatronics, software engineering, and UX.
RoboField
RoboField (Robotics Fieldwork) is an exciting initiative with the aim of linking students that have a passion in robotics, with projects and academics in the UTS Robotics Institute. Students are given the opportunity to develop, manage and maintain robots ranging from simple educational platforms, through to cutting edge robotic systems.
Sodium-Sulfur Batteries for Sustainable Energy Storage
This project aims to develop room-temperature sodium-sulfur batteries for renewable energy storage. Sodium-sulfur batteries are ideal for large-scale energy storage, owing to high energy density and low cost.
Sound Transmission Loss
In industrial applications and academic research sound transmission loss (STL) is a practical benchmark metric for the performance assessment and validation of materials and designs.
Student Additive Manufacturing
This project involves the development of additive manufacturing research platforms by student teams. To date, a 5 axis, large bed FDM machine with exchangeable plastic filament and syringe extruders has been designed, assembled and tested. Ongoing projects include an industrial inkjet drop-on-demand based UV resin printer and a 6 axis robot arm FDM printer.
Surface Plasmon Resonance Biosensor
It is estimated that almost 145,000 new cases of cancer will be diagnosed in Australia annually.
UTS Electric Car
UTS Motorsports Electric is a student-based team that represents the University of Technology Sydney national and international competition such as the Formula SAE-Australasia competition and F-S Sydney competition.
UTS Motorsports Autonomous Car project
UTS Motorsports Autonomous Car project is one of the newest student-run teams from the University of Technology Sydney. Formed in 2017, the team aims to compete in the Formula SAE Australasia driver-less division.
UTS Rocketry Team
The UTS Rocketry Team is dedicated to bridging the gap between UTS students and Australia’s growing aerospace industry. We also just love rockets!
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Research | Innovation | Community and culture | Social change