The New York Independent System Operator (NYISO) manages the efficient flow of electricity on over 11,000 circuit-miles of high-voltage transmission lines, dispatching power from hundreds of generating units across the state. The NYISO applies cutting-edge technology to operating a reliable electricity system, managing competitive markets for wholesale electricity, and planning for the Empire State's energy future. The NYISO’s Operations department invites applications for a full-time Technical Specialist, Grid Transition. This role will provide advanced technical expertise and execution leadership for engineering studies, analytical methods, and modeling activities supporting the transition of the New York bulk power system to increasing levels of inverter‑based resources (IBRs), distributed energy resources (DERs), large loads and emerging grid technologies. The Technical Specialist will also lead and support in‑depth investigations into anomalous system conditions, disturbances, and emerging technical issues, providing rigorous technical assessments to support system operations and planning. The Technical Specialist will independently work on complex technical assignments, mentor engineers as needed, and collaborate closely with the Principal, Grid Transition to ensure analytical rigor, technical consistency, and applicability of study outcomes across NYISO processes. The Technical Specialist is expected to be a deep technical contributor and integrator, owning complex study workstreams, refining analytical methods, and translating evolving technical findings into actionable recommendations for planning and operations. This individual would have a high level of technical proficiency in topics such as frequency response, short-circuit strength, ramping issues, control interaction, and IEEE guidelines. This individual will have expertise in conducting specialized power systems analysis such as electro-magnetic transients as it pertains to various industry standards. Examples of additional studies includes Sub-synchronous torsional interaction studies (SSTI), week grid stability studies (both in RMS and EMT domain), use and development of advanced study methods and approaches to identify system resonances (such as impedance/frequency scans), among other topics.
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Job Type
Full-time
Career Level
Senior