Power Systems Engineer (PSCAD & Data Center Infrastructure)
Company: Verita AI
Location: Location not specified (Remote)
Type: Contract
Remote: Yes
Posted: 2026-05-28
About this role
About Verita AI
Verita AI builds high-trust data pipelines that enable AI systems to understand real-world engineering, infrastructure, and operational workflows.
We work with experienced engineers and technical experts to help train and evaluate next-generation AI systems on how complex power systems are designed, modeled, analyzed, and operated in practice.
Our founding team includes alumni of Mercor, Hudson River Trading, Citadel, IDEO, Stanford, and Yale. We partner with world-class researchers and engineers at leading AI labs to advance the state of the art. Verita AI is a seed-stage company valued at $25 million, having raised $6 million led by Kindred Ventures.
About the Role
We are seeking a Principal Power Systems Engineer to support the development and evaluation of advanced AI systems.
This role is ideal for engineers with deep expertise in electrical power systems, utility interconnection, transmission and distribution infrastructure, protection systems, and large-scale power delivery environments. Candidates should be comfortable translating real-world power architectures into simulation-ready models and evaluating system behavior under dynamic operating conditions.
You will apply your expertise to assess AI-generated engineering analyses, validate technical outputs, and help train next-generation AI systems on real-world power engineering workflows.
Responsibilities
- Evaluate AI-generated power system analyses, studies, and engineering recommendations
- Review and validate electrical infrastructure designs for technical accuracy and feasibility
- Assess load flow, short-circuit, protection, and transient stability studies
- Review utility interconnection and power delivery architectures
- Evaluate electrical single-line diagrams and system designs
- Analyze transformer sizing, switchgear configurations, protection coordination, feeder design, and system redundancy strategies
- Assess power system behavior during faults, load trans...