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Field
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electrical systems and equipment. Identify and develop cost control opportunities and system cost planning. Act as the University's central engineering representative by providing unbiased information
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topics, and developing optimization models and/or data-driven controls that are related to at least one of the following topics: Developing energy management strategies related to ADMS, DERMS, microgrid
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integration, load management, and distributed control systems. Experience in advanced charging systems, including L1~3 charging units, inductive/wireless charging, and vehicle-to-grid (V2G) technologies
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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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integration, load management, and distributed control systems. Experience in advanced charging systems, including L1~3 charging units, inductive/wireless charging, and vehicle-to-grid (V2G) technologies
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Required Qualifications Solid background in Power Electronics Design and Control (e.g., research experience in microgrids, cascaded multilevel converters, or multiple inverter coordination is highly
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of microgrids in distribution systems. An ideal candidate is expected to have a good knowledge of dynamic modeling of distribution systems, relay programming, microgrid controller programming as well as setting
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such as power systems, power electronics, controls, and energy management Knowledge/Skills/Abilities Experience and interests in the power and energy systems area, and especially in applying data-driven
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modeling, control, and optimization of power and energy systems with applications to maritime and coastal infrastructures (e.g., shipboard microgrids, port facilities, islanded communities, desalination
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Control (e.g., research experience in microgrids, cascaded multilevel converters, or multiple inverter coordination is highly preferred). Experience in power converter hardware prototyping and debugging