Soham Ghosh
University of Kansas, Arizona State University, Dr MGR Educational and Research Institute
About
Soham Ghosh is a registered professional engineer (electrical) with demonstrated expertise in system protection and distribution/transmission substation design. He is currently responsible for the management of large grid interconnection EPC and engineering services projects and provides custom project solutions for his clients all over the US and globally ranging from 13.2 – 500 kV.
Ghosh has published technical and perspective articles on various cutting-edge technology topics, including reducing SF6 emissions from gas insulated switchgear, strengthening the electric grid through ML based decision making, and preventing grid-induced wildfires.
Ghosh is a member of CIGRE, the IEEE PES and IAS, and the IEEE Standards Association. Ghosh is also actively involved with several IEEE working groups and technical committees including IEEE 1547.7 and IEEE P7999.
Employment
Employment history is unavailable.
Education
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University of Kansas Masters of Engineering in Project Management2020 - 2021
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Arizona State University Masters of Science in Electrical Engineering2014 - 2016
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Dr MGR Educational and Research Institute Bachelors in Electrical and Electronics Engineering2008 - 2012
Projects & Funding
Projects & funding information is unavailable.
Publications (23)
- Probabilistic Assume–Guarantee Contracts for Islanded Mission-Critical Power System Operations Save
- Federated learning for critical electrical infrastructure—handling data heterogeneity for predictive maintenance of substation equipment Save
- Towards achieving a neutral carbon footprint for electrical substations through multi-pronged approach Save
- Floating solar systems for clean energy: Addressing humidity-induced corrosions Save
- Revisiting grid flexibility techniques for minimizing renewable energy curtailment Save
- Federated Learning for Critical Electrical Infrastructure - Handling Data Heterogeneity for Predictive Maintenance of Substation Equipment Save
- Scalable Data Centers - Power Generation and Delivery Challenges and Solutions Save
- Enhancing Grid Resiliency in High Fire or Flood Risk Areas: Integrating Protective Relay Settings, Broken Conductor Detection, and Grid Hardening for Climate-Induced Event Preparedness Save
- Trust for Critical Power Infrastructure -Cybersecurity Framework for Modern OT Environments Save
- Optimizing Grid Flexibility Techniques for Minimizing Renewable Energy Curtailment Save