1. Defense Use Case . 2016. Analysis of the cyber attack on the Ukrainian power grid . Electricity Information Sharing and Analysis Center (E-ISAC) 388 ( 2016 ). Defense Use Case. 2016. Analysis of the cyber attack on the Ukrainian power grid. Electricity Information Sharing and Analysis Center (E-ISAC) 388 (2016).
2. Priya L Donti , David Rolnick , and J Zico Kolter . 2021. DC3: A learning method for optimization with hard constraints. arXiv preprint arXiv:2104.12225 ( 2021 ). Priya L Donti, David Rolnick, and J Zico Kolter. 2021. DC3: A learning method for optimization with hard constraints. arXiv preprint arXiv:2104.12225 (2021).
3. Bryan Hooi , Dhivya Eswaran , Hyun Ah Song , Amritanshu Pandey , Marko Jereminov , Larry Pileggi , and Christos Faloutsos . 2018. GridWatch: Sensor Placement and Anomaly Detection in the Electrical Grid . In ECML-PKDD. Springer , 71–86. Bryan Hooi, Dhivya Eswaran, Hyun Ah Song, Amritanshu Pandey, Marko Jereminov, Larry Pileggi, and Christos Faloutsos. 2018. GridWatch: Sensor Placement and Anomaly Detection in the Electrical Grid. In ECML-PKDD. Springer, 71–86.
4. Physics-Guided Deep Neural Networks for Power Flow Analysis
5. Ethan King , Ján Drgoňa , Aaron Tuor , Shrirang Abhyankar , Craig Bakker , Arnab Bhattacharya , and Draguna Vrabie . 2022 . Koopman-based Differentiable Predictive Control for the Dynamics-Aware Economic Dispatch Problem. In 2022 American Control Conference (ACC). 2194–2201 . https://doi.org/10.23919/ACC53348.2022.9867379 10.23919/ACC53348.2022.9867379 Ethan King, Ján Drgoňa, Aaron Tuor, Shrirang Abhyankar, Craig Bakker, Arnab Bhattacharya, and Draguna Vrabie. 2022. Koopman-based Differentiable Predictive Control for the Dynamics-Aware Economic Dispatch Problem. In 2022 American Control Conference (ACC). 2194–2201. https://doi.org/10.23919/ACC53348.2022.9867379