Project Grant 2432387
- This $199,986 National Science Foundation project grant supports the development of variational quantum algorithms to efficiently solve time-dependent nonlinear differential equations for very high-dimensional transient stability simulation and N-K contingency analysis problems in large-scale power systems with renewable energy sources. Funded under the NSF's $47.041 million Engineering program, the research aims to realize an exponential advantage over classical algorithms through new...
- This $200,000 project grant from the National Science Foundation's Mathematical and Physical Sciences program (CFDA 47.049) will fund research at Clarkson University to develop a holistic quantum-inspired framework for power system state estimation. The framework aims to address cybersecurity risks and operational challenges in decentralized grids through four main activities: 1) Designing a quantum network architecture and protocols for smart grid communications and key distribution. 2)...
- This Project Grant award from the National Science Foundation's (NSF) Engineering program (CFDA 47.041) aims to develop quantum computing technology to enable a seamless transition between grid-following and grid-forming controls for inverter-based resources in renewable energy systems. The $275,000 project, with a period of performance from January 1, 2025 to December 31, 2027, will be conducted by Clemson University. The key objectives are to design variational quantum algorithms that can...
- This $200,000 National Science Foundation project grant supports the development of a holistic quantum-inspired framework for power system state estimation at Virginia Commonwealth University from January 2023 through December 2025. The goal is to address cybersecurity risks and operational challenges in decentralized grids through four main research activities: 1) designing a quantum network architecture and protocols for smart grid communications, 2) developing efficient quantum computing...
- The National Science Foundation (NSF) awarded a $300,000 Project Grant under the Computer and Information Science and Engineering (CFDA 47.070) program to The Pennsylvania State University (Penn State) to establish a quantum computing training program for power system engineers. The goal of this 2-year project is to create a training program that synthesizes knowledge from power engineering and quantum computing, enabling trainees to develop quantum algorithms to address complex challenges in...
- The National Science Foundation (NSF) awarded a Project Grant of $275,000 under the Engineering program (CFDA 47.041) to The Pennsylvania State University (Penn State) to develop quantum computing algorithms for optimizing the efficiency, reliability, and resilience of renewable energy systems. The project, titled "Collaborative Research: Variational Quantum Technology for Seamless Transition Between Grid-Following and Grid-Forming Controls for Inverter-Based Resources," aims to design...
- The National Science Foundation (NSF) awarded a $299,999.00 Project Grant under the Mathematical and Physical Sciences program (CFDA 47.049) to the Texas A&M Engineering Experiment Station (Tees) to develop novel dynamic grid optimization algorithms and modeling tools. The project aims to address the challenges posed by the growth of renewable energy on the electric power grid, including uncertainty from weather-dependent resources and stability concerns from power electronics-interfaced...
- The National Science Foundation (NSF) awarded a $250,000 Project Grant to Carnegie Mellon University (CMU) under the Engineering program (CFDA 47.041). The grant supports the development of a "Collaborative Research: Scalable Circuit Theoretic Framework for Large Grid Simulations and Optimizations" project. The project aims to create a generalized distributed framework for solving large-scale power grid problems that are both fast and robust, enabling transformative changes in future...
- This $3,000,000 Project Grant award from the National Science Foundation's (NSF) Engineering program (CFDA 47.041) will fund research at Columbia University from October 1, 2025 to September 30, 2028. The project, titled "FLOQUET EFFECTS AT ULTRA-LOW DRIVING FIELDS FOR STEADY STATE QUANTUM DEVICES," aims to pioneer a new approach to engineering and manipulating quantum materials using low-power, continuous-wave electromagnetic fields. The research will focus on five key goals: (1)...
- The National Science Foundation (NSF) awarded a $484,965 project grant under the Engineering (CFDA 47.041) program to New York University (NYU) to develop transformative concepts and methodologies to enhance situational awareness of electric power distribution systems. The project aims to address challenges in integrating distributed renewable energy generation by enabling real-time tracking of distribution system operating states. Key objectives include learning-based continuous-time system...
The National Science Foundation (NSF) awarded a $503,644 Project Grant under the Engineering program (CFDA 47.041) to the Research Foundation for the State University of New York (Stony Brook University) to establish a scalable Quantum Electromagnetic Transient (QEMT) framework with ultra-fast screening capabilities. This 3-year project, running from October 1, 2025 to September 30, 2028, aims to develop advanced computational tools to support the reliable integration of all available electric generation sources into the national grid. Key focus areas include accelerating electromagnetic transients (EMT) simulations, enabling fast contingency screening, and advancing quantum computing and data processing techniques for power grid applications. The broader impacts of this project include enabling the accelerated and reliable deployment of gigawatts of added generation, contributing to power engineering and quantum information science, and serving as a living laboratory for quantum-enabled power grids.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $503.6k | 8/18/25 |