Farrokh Rahimi

VP @ OATI

About Farrokh Rahimi

Vice President Farrokh Rahimi

Farrokh Rahimi holds the position of Vice President. In this role, he leverages his substantial expertise in grid modernization and the impacts of renewable resources. Rahimi provides strategic insights and leadership, ensuring that the organization's objectives align with industry developments and regulatory requirements.

Farrokh Rahimi's Ph.D. and Expertise

Farrokh Rahimi holds a Ph.D., underscoring his deep academic and practical knowledge in his field. His expertise spans grid modernization, the impacts of renewable resources, and the critical role of Distribution System Operators (DSOs) in modernized grid operations. Rahimi is well-versed in the nuances of integrating distributed energy resources (DERs) and enhancing demand-side flexibility.

Farrokh Rahimi on Compliance Filings for CAISO and NYISO

Farrokh Rahimi has provided valuable insights on compliance filings for both the California Independent System Operator (CAISO) and the New York Independent System Operator (NYISO). His expertise helps navigate the complex regulatory landscapes of these organizations, ensuring compliance with industry standards and contributing to the effective operation of the grid.

Impact of FERC Order 2222 on Distributed Energy Resources

Farrokh Rahimi has discussed the significant impacts of FERC Order 2222 on distributed energy resources (DERs) and demand-side flexibility. His analyses help stakeholders understand how new policies and orders influence the integration of DERs into the bulk power system and distribution networks, promoting a more adaptable and resilient energy grid.

Advanced Data Analytic Frameworks for Load and DER Forecasting

Farrokh Rahimi has written extensively on the importance of advanced data analytic frameworks for load and distributed energy resource (DER) forecasting. His work emphasizes the need for sophisticated analytical tools to accurately predict energy demands and resource availability, which is crucial for the efficient and reliable operation of modern energy grids.

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