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Power System Engineering Jobs in Michigan (NOW HIRING)

Sr. System Engineer - Swaybar

Detroit, MI

$103K - $141K/yr

At AAM, the POWER is in our people. We believe that an equitable and inclusive workplace benefits ... Supports system engineering in the definition of performance requirements, architecture, and ...

The successful candidate will provide systems engineering support for tactical ground vehicle ... power systems, communications systems, or related defense technologies. Experience with ...

The successful candidate will provide systems engineering support for tactical ground vehicle ... power systems, communications systems, or related defense technologies. Experience with ...

Senior Electrical Power Engineer

Ann Arbor, MI · On-site

$105K - $137K/yr

Master's degree in Electrical Engineering or Control Systems Engineering with an Electrical Power emphasis. * Minimum 15 years of experience in electrical power generation design. * Design experience ...

The successful candidate will provide systems engineering support for tactical ground vehicle ... power systems, communications systems, or related defense technologies. Experience with ...

Master's degree in Electrical Engineering or Control Systems Engineering with an Electrical Power emphasis. * Minimum 15 years of experience in electrical power generation design. * Design experience ...

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Showing results 1-20

Power System Engineering information

See Michigan salary details

$52.7K

$123.8K

$170.8K

How much do power system engineering jobs pay per year?

As of Jun 9, 2026, the average yearly pay for power system engineering in Michigan is $123,827.00, according to ZipRecruiter salary data. Most workers in this role earn between $99,400.00 and $150,800.00 per year, depending on experience, location, and employer.

What is the difference between Power System Engineering vs Power Distribution Engineering?

AspectPower System EngineeringPower Distribution Engineering
FocusDesign, analysis, and operation of large-scale electrical power systems including generation, transmission, and distribution networksDesign and implementation of local electrical distribution systems, including substations and feeders for end-users
CertificationsPE license, IEEE certificationsPE license, specialized distribution certifications
Work EnvironmentUtilities, power plants, grid operatorsUtilities, electrical contractors, distribution companies

Power System Engineering focuses on the overall electrical grid, ensuring reliable power transmission and generation. Power Distribution Engineering concentrates on local distribution networks that deliver electricity to consumers. Both roles require similar credentials and often work within the utility industry, but their scope and focus differ significantly.

What are the common challenges faced by Power System Engineers when integrating renewable energy sources into existing grids?

Power System Engineers often encounter challenges such as grid stability, variability of renewable sources, and the need for advanced grid management technologies when integrating renewables. Balancing supply and demand becomes more complex due to the intermittent nature of solar and wind power. Engineers must also address issues related to grid protection, voltage regulation, and ensuring reliable power quality, often working closely with cross-functional teams to implement solutions. Staying updated on evolving grid codes and standards is essential for success in this dynamic environment.

What is power system engineering?

Power system engineering is a field of electrical engineering focused on the generation, transmission, distribution, and utilization of electric power. It involves designing and maintaining systems that deliver electricity safely and reliably to homes, businesses, and industries. Power system engineers work on projects such as power plants, substations, and grid integration of renewable energy sources. Their work ensures the stability and efficiency of electrical networks, addressing challenges like load management and fault analysis.

What are the key skills and qualifications needed to thrive as a Power System Engineer, and why are they important?

To thrive as a Power System Engineer, you need a strong background in electrical engineering, power systems analysis, and typically a bachelor's or master's degree in electrical engineering. Familiarity with industry-standard tools like ETAP, PSCAD, MATLAB, and relevant certifications such as Professional Engineer (PE) licensure are common requirements. Excellent problem-solving, teamwork, and communication skills set outstanding engineers apart in this field. These competencies ensure reliable power system design, effective project execution, and safe, efficient operation of electrical grids.
Electric Drive Module System Engineer

Electric Drive Module System Engineer

Stellantis

Auburn Hills, MI • On-site

Full-time

Posted 5 days ago


Stellantis rating

7.4

Company rating: 7.4 out of 10

Based on 124 frontline employees who took The Breakroom Quiz

17th of 44 rated automakers


Job description

The Electric Drive Modules (EDMs) System Engineer is responsible for optimizing, designing, and defining the Best-in-Class [BIC] EDM system [eMotor, Power Inverter, Gearbox] for efficiency, performance or cost for a given vehicle requirements / constraint. The engineer would lead the development, further improve, and maintain EDM system design optimization process/ methodologies considering all domains- electrical, mechanical, thermal and NVH. The System Engineer would run trade of studies, evaluate design proposals, and recommend best technical EDM design. The engineer will be supporting fellow system engineers on multiple programs globally. The engineer will define requirements for EDM system and its subcomponents- eMotor, PIM, Gearbox. The Engineer will participate in EDMs technical roadmap and develop different EDMs concepts to meet its technical specs, life, and quality requirements.
Basic Qualifications:
  • Bachelor of Science in Electrical Engineering, or an equivalent engineering degree from an accredited university
  • Minimum of 5 years of industrial experience in optimization and design of BIC EDM systems [eMotor, PIM and Gearbox] for different electrified propulsion architecture and applications (BEVs)- considering system efficiency, performance, NVH, cost and other system constraints.
  • Expert in eMotor design with minimum of 5 years of experience.
  • Good understanding of Electric Drive System design -eMotor design, power electronics / power inverter module design/ gearbox design / motor controls.
  • Expert in model-based system engineering and tools -MATLAB, Simulink, Simcenter Amesim and other competitive commercial system 1D simulation software
  • Expert in EDM System analysis- efficiency and performance.
  • Experience in defining requirements for EDM or its subcomponents -eMotor, PIM or gearbox.
  • Excellent communication skills and demonstrated ability to work both independently and in a team.

Preferred Qualifications:
  • Ph.D. in Electrical, or equivalent Engineering from an accredited university.
  • Excellent problem-solving techniques and analytical ability
  • Excellent leadership skills

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