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collaborating closely with industry and research partners. For further information, please visit: https://www.unsw.edu.au/engineering/our-schools/electrical-engineering-telecommunications Position Summary
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https://www.ntu.edu.sg/erian This Candidate will be working on a renewable project to support projects on energy storage sizing, integrating distributed energy resources, renewables, and other advanced
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. - Design and execute comprehensive testing phases for the microgrid, utilizing both synthetic load profiles and real-world operational scenarios. - Conduct in-depth Life Cycle Assessments (LCA) for a novel
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microgrid capable of integrating renewable energy generation, storage systems, and traditional generation units, equipped with an advanced predictive, distributed, and resilient energy management system (EMS
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Simulation) will support a one-year applied research project and evaluate a mobile DC microgrid for military tactical applications. The role involves developing detailed power system models in ETAP and MATLAB
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impactful, application-driven research. This position supports a strategic research project on full electric harbour craft microgrid modelling, onboard energy management systems (EMS), and hardware-in
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energy resources and microgrids; High voltage DC transmission and distribution components and systems; Electric propulsions systems for land, sea and air; Wide bandgap solid-state protective devices
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will have the opportunity to be equipped with applied research skill sets that are relevant to industry demands while working on research projects in SIT. The Research Engineer (Microgrid Controller
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electrical engineering and energy efficiency management. Key Responsibilities Participate in the research project to design a microgrid controller for grid interactive building applications. Develop control
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. Familiarity with high-voltage test systems, simulation tools (e.g., PSCAD, PSS/E, MATLAB/Simulink), and grid-interactive microgrids. Demonstrated success in transitioning power system innovations from R&D