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on a project that focusing on developing optimal sensor placement models to improve the visibility of distribution systems with high penetration of grid-edge DERs. The intern is expected to work closely
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programming language for this project will be Julia, known for its high performance in scientific computing. Primary Responsibilities Contribute to the full software development lifecycle, from design and
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Center performs research to make cybersecurity an enabling part of the nation’s energy ecosystem. This is primarily accomplished through engaging with energy sector partners, government program offices
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to join our team in a cutting-edge project focused on the stability analysis of power systems with a high penetration of Inverter-Based Resources (IBRs). As IBRs become increasingly prevalent
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goals of the U.S. Department of Energy, NREL, and industry partners toward a sustainable energy future. We work with the electricity industry and broader research community to conduct high-impact research
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responsibilities include: Conduct transient analysis (small-signal, transient, and voltage stability) for high IBR-dominated systems Support large-scale system studies (e.g., national-scale scenarios) using
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keys. Reporting & Team Collaboration: Submit detailed reports concerning incidents, observations, and shift activities. Perform effectively as part of a team, ensuring respect and professionalism
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biological, chemical, and catalytic research . The center has strong thrusts in polymer design and upcycling, separations, synthetic biology and bioconversion, analytical sciences, computational modeling, and
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duties include but may not be limited to: Performing chemical modifications and characterization of lignin to form high-strength materials Characterizing chemical and thermal properties of materials using
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industry and broader research community to conduct high-impact research and development that provides practical solutions to grid design and integration challenges that enable sustainable energy systems