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Senior Power Systems Engineer Jobs in Vermont (NOW HIRING)

The Senior Electrical Engineer responsible for the design, analysis, validation, and deployment of advanced energy storage systems with a strong focus on electrical power systems, control systems ...

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Senior Electrical Engineer

Waterbury Center, VT · On-site

$113K - $147K/yr

The Senior Electrical Engineer responsible for the design, analysis, validation, and deployment of advanced energy storage systems with a strong focus on electrical power systems, control systems ...

As a Systems Engineer, you'll help design fuel system components for some of the world's leading ... At LMS, we power aerospace innovation through precision fuel measurement systems. You'll work in a ...

Senior Systems Engineer (L5)

Burlington, VT · On-site

$103K - $140K/yr

SENIOR SYSTEMS ENGINEER Location: Burlington, VT WHO WE ARE Open Approach is a values-driven, client-focused IT services company based in Burlington, Vermont. We deliver exceptional managed ...

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Senior Power Systems Engineer information

See Vermont salary details

$59.5K

$132.6K

$187.1K

How much do senior power systems engineer jobs pay per year?

As of Sep 12, 2026, the average yearly pay for senior power systems engineer in Vermont is $132,622.00, according to ZipRecruiter salary data. Most workers in this role earn between $111,100.00 and $152,000.00 per year, depending on experience, location, and employer.

What does a senior power systems engineer do?

A Senior Power Systems Engineer is responsible for designing, analyzing, and maintaining electrical power systems, which can include power generation, transmission, and distribution networks. They often lead complex projects, oversee system reliability and efficiency, and ensure compliance with industry standards and regulations. In this role, they may also mentor junior engineers, conduct system studies, and implement solutions for system improvements. Their expertise is crucial for supporting the safe and efficient delivery of electrical power in industries such as utilities, manufacturing, and renewable energy.

What are the key skills and qualifications needed to thrive as a senior power systems engineer?

To thrive as a Senior Power Systems Engineer, you need a deep understanding of electrical engineering principles, power system analysis, and typically a bachelor’s or master’s degree in electrical engineering along with several years of relevant experience. Proficiency with industry-standard tools such as ETAP, PSS/E, MATLAB, and familiarity with relevant standards and certifications like PE (Professional Engineer) licensure are commonly required. Strong analytical thinking, project management, and effective communication skills set candidates apart in this role. These skills and qualifications are crucial for ensuring the safe, reliable, and efficient design and operation of complex power systems.

What are some common challenges senior power systems engineers face when working on large-scale grid integration projects?

Senior Power Systems Engineers often encounter challenges such as coordinating with multidisciplinary teams, managing project timelines, and ensuring regulatory compliance when integrating large-scale renewable energy sources into existing grids. They must also address grid stability and reliability issues, particularly when dealing with variable generation from renewables. Effective communication and problem-solving skills are essential to navigate these complexities and deliver successful project outcomes.

What is the difference between Senior Power Systems Engineer vs Power Systems Engineer?

AspectSenior Power Systems EngineerPower Systems Engineer
Required CredentialsBachelor's or Master's in Electrical Engineering, Professional Engineer (PE) license often preferredBachelor's or Master's in Electrical Engineering, PE license beneficial but not always required
Work EnvironmentDesign, analysis, and oversight in utility, renewable, or industrial sectorsDesign, testing, and implementation in power generation and distribution projects
Employer & Industry UsageUtilities, energy companies, consulting firmsPower generation, transmission, distribution companies, consulting firms

The main difference between a Senior Power Systems Engineer and a Power Systems Engineer lies in experience level and responsibilities. Senior engineers typically have more advanced expertise, oversee complex projects, and may mentor junior staff. Both roles require similar educational backgrounds and certifications, but senior roles often demand greater industry experience and leadership skills.

What are popular job titles related to Senior Power Systems Engineer jobs in Vermont?

For Senior Power Systems Engineer jobs in Vermont, the most frequently searched job titles are:

What cities in Vermont are hiring for Senior Power Systems Engineer jobs?

Cities in Vermont with the most Senior Power Systems Engineer job openings:

Infographic showing various Senior Power Systems Engineer job openings in Vermont as of August 2026, with employment types broken down into 83% Full Time, 13% Part Time, 3% Contract, and 1% Nights. Highlights an 86% Physical, 2% Hybrid, and 12% Remote job distribution, with an average salary of $132,622 per year, or $63.8 per hour.

Senior Power Systems Engineer | Battery R&D

South Burlington, VT • On-site

$104K - $143K/yr

Full-time

Re-posted just now


Job description

We are seeking a Senior Power Systems Engineer to join the Battery team and own the high voltage protection system for our aircraft - from first-principles analysis through full-scale testing to type-certified aircraft. You will adapt coordination models to new configurations, build and maintain fault analysis models for aircraft-level integration, design efficient test campaigns, analyze test data to validate and refine predictions, and summarize findings in reports submitted to certification authorities. This position requires a blend of knowledge in electrical engineering, system modeling, test design, and data analysis. As Senior Power Systems Engineer, you will go deep on a single critical system - high voltage protection - that is essential to helping shape the future of aviation. 

How you will contribute to revolutionizing electric aviation:
  • Develop and maintain the fuse coordination and fault protection models that define how our HV system behaves under every credible fault 
  • Design and execute full-scale protection tests - spec DAQ hardware, run the test, and use the data to challenge and refine your models 
  • Build battery and protection models that integrate with aircraft-level simulations -enabling system trades grounded in validated physics 
  • Partner with the high voltage team on mechanical design - translating insights from the fuse coordination modeling and testing to the aircraft design 
  • Collaborate across software, electrical, and systems engineering to support certification efforts 
  • Do whatever job is needed to solve problems and make the team better 
Minimum Qualifications:
  • PhD or Master's +5 years relevant experience  in electrical engineering, physics, or a related field 
  • 5+ years of experience with building and validating models of real-world systems in MATLAB / Simulink or Python 
  • Familiarity with power systems and high voltage system protections, both active and passive 
  • Contributions to HV system design in the EV or other HVDC applications 
  • Ability to synthesize large, complex data sets into actionable engineering insights 
Above and Beyond Qualifications:
  • Hands-on experience designing data acquisition systems - selecting sample rates, resolution, filtering, and instrumentation to capture the physics that matters 
  • Skill in design of experiments -detailing efficient test matrices that validate models with minimal testing and maximum learning 
  • Ability to diagnose model-to-hardware discrepancies - using test data to identify what's missing, what's wrong, and what needs refinement 
  • Prior work with aviation certification standards (e.g. ARP 4754 / ARP 4761) or work in other safety-critical environments 
  • Experience modeling and system identification of real-world systems in MATLAB and Simulink 
  • Communication with DAQ devices, data manipulation and storage 
Physical Demands and Work Environment:
  • Ability to transport yourself to various BETA locations around Burlington as needed 
  • Able to work in a dog-friendly and open-office environment 
  • Strong interpersonal and communication skills to collaborate with multidisciplinary teams 
  • Growth mindset and initiative to own problems, iterate quickly, and deliver practical solutions 
  • Desire to learn, experiment, and make others around you better