Senior Power Systems Engineer
SB EnergyAbout the role
Do you want to work with high-caliber professionals in a dynamic and growing company? Are you entrepreneurial, hard-working, and collegial? Join us at SB Energy, a leading infrastructure company backed by SoftBank Group and Ares Infrastructure, pairing cutting-edge innovation with best-in-class execution. Our mission is to deliver reliable and secure data center and power infrastructure to strengthen America's future.
Founded in 2019, SB Energy is a SoftBank Group company headquartered in Redwood City, California. In 2026, SoftBank Group and OpenAI announced a $1 billion investment to support SB Energy as their leading development and execution partner for data center campuses, while Ares Infrastructure continues its long-standing support of the company's growth. SB Energy develops, builds, owns, and operates some of the largest and most technically advanced energy and data center infrastructure projects in the United States. Since its founding, the company has rapidly grown into a top-tier integrated platform with more than 3 gigawatts (GW) in operation and a multi-GW pipeline of energy and data center infrastructure nationwide.
SB Energy also leverages a strong culture of innovation to identify and integrate new technologies into its projects, including its AI-based digital platform, delivering energy infrastructure that is local, reliable, and matched to load. We are building the energy and infrastructure future—today.
Come join us in accelerating the energy and infrastructure transition!
Title: Senior Power Systems Engineer
Basic Function
As part of the Grid Integration Team, the Senior Power Systems Specialist will provide technical leadership in the modeling, simulation, and validation of power-system solutions supporting hyperscale data centers. The role will focus primarily on electromagnetic transient studies, grid-performance and compliance assessments, and dynamic analysis of onsite generation, energy storage, and mission-critical electrical systems.
The position will support the full project lifecycle, including concept development, system modeling, utility interconnection studies, wide-area transmission and point-to-point transfer assessments, design validation, commissioning support, and operational readiness. The engineer will develop and execute advanced simulations using PSCAD/EMTDC, PowerWorld, PSS®E, and other applicable tools to assess system performance and support compliance with utility, regional reliability, and ISO/RTO requirements, including those applicable in WECC, ERCOT, SPP, PJM, MISO, and CAISO.
The role will help ensure that power systems serving hyperscale data centers are designed to achieve the required levels of reliability, stability, scalability, and operational performance.
Responsibilities:
- Develop and maintain in-house power system models for hyperscale data center power systems, including onsite generation, utility interconnections, microgrids, and hybrid energy systems.
- Lead EMT modeling and transient studies using PSCAD/EMT tools to evaluate dynamic performance of data center generation systems, including gas engines, gas turbines, BESS, Fuel Cells, UPS systems, and hybrid power architectures.
- Perform power system studies using PSCAD, Powerworld, TARA, PSS®E, Power Factory, ETAP, or similar tools to validate system performance and compliance with utility and ISO requirements.
- PSCAD Automation Library or equivalent scripting and Python-based batch simulation
- Develop fit-for-purpose system-level and generic models; integrate, test, troubleshoot, and validate detailed OEM models; and develop simplified screening models where appropriate.
- Perform grid compliance studies for ERCOT, PJM, MISO, WECC, SPP, and other utility/ISO requirements, including Load smoothing, LVRT, HVRT, frequency ride-through, reactive power capability, voltage regulation, frequency response, load ramp rate limitations, and large load step response.
- Analyze the interaction between hyperscale data center loads and the electrical grid, including AI workload fluctuations, large load ramps, transient events, and generation response requirements.
- Develop and execute dynamic simulation cases to evaluate generator transient response, voltage and frequency stability, load acceptance, load rejection, black start capability, islanded operation, microgrid operation, and grid-connected
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