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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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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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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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. 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
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interface with cyber and physical aspects of power systems such as the software-defined networking (SDN) in the microgrid control. Supervised by Prof. Xin Zhang (cyber-physical power systems) , the PhD
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the modelling, simulation and analysis of the large, complex and dynamic systems (e.g. cyber and physical systems). The PhD student will join the Sheffield Control and Power Systems (CAPS) Laboratory (https
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incorporates an advanced building skin, a unique “transparent infrastructure,” a “smart” microgrid, and a computing data center that demonstrate the use of sustainable building technologies and energy systems
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generation, microgrids, renewable energy, battery energy storage, grid interconnection. Knowledge of electrical systems in complex buildings and labs Knowledge of automated meter reading (AMR) systems
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applications and optimization in the project area. Preferred profile: Good teamwork skills and motivation to use computational applications, such as software and algorithms for optimizing microgrids/energy