12 power-electronic "https:" "https:" "https:" "https:" "https:" "https:" "https:" "https:" "https:" Postdoctoral research jobs at Oak Ridge National Laboratory
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Postdoctoral Research Associate to develop, scale, and apply artificial intelligence (AI) and deep learning (DL) models for power grid systems. The successful candidate will contribute to scalable AI
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office can be found here: https://www.ornl.gov/content/research-integrity Benefits at ORNL: UT Battelle offers an exceptional benefits package to include matching 401K, Pension Plan, Paid
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be expected to commit to ORNL’s Research Code of Conduct. Our full code of conduct and a statement by the Lab Director’s office can be found here: https://www.ornl.gov/content/research-integrity
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., quantum computing), EMT simulations, and power electronics control. Major Duties/Responsibilities: Develop electromagnetic transient (EMT) models for transmission or distribution grids
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Model, working closely with the experimental team to understand this device’s PMI physics and optimize performance of the device in its upcoming campaigns. The position resides in the Power Exhaust and
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), FPGAs, or specialized neuromorphic processors. Conduct power profiling, energy-per-inference measurements, and latency benchmarking on physical edge hardware platforms. Build strong collaborations
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– especially related to magnetic materials, experience with first-principles electronic structure methods and proven expertise in developing and/or applying advanced AI/ML methods for accelerated materials
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systems. Experience setting up data acquisition systems and implementing signal processing techniques. Experience working with benchtop instrumentation, including power supplies, oscilloscopes, optical
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/Responsibilities: Work closely with members of NTI and CNMS to develop HPC workflows that can perform multi-fidelity simulations to predict and interpret a wide range of structural and electronic characterization
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excitonic and electronic behavior across multiple length and time scales using a combination of photoinduced force microscopy (PiFM), photoluminescence, and electroluminescence spectroscopy. These