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Bess Engineer Jobs in Detroit, MI (NOW HIRING)

Experience supporting Battery Energy Storage Systems (BESS) or renewable energy products. * 5+ years of experience in product certification, compliance engineering, systems engineering, or functional ...

Experience supporting Battery Energy Storage Systems (BESS) or renewable energy products. * 5+ years of experience in product certification, compliance engineering, systems engineering, or functional ...

Co-develop product roadmaps with BESS hardware and systems engineering; define strategy for co-existence or replacement of 3rd-party Power Plant Controllers (PPC). * Deliver algorithms and software ...

Showing results 21-40

Bess Engineer information

See Detroit, MI salary details

$49K

$116.4K

$152.8K

How much do bess engineer jobs pay per year?

As of Sep 5, 2026, the average yearly pay for bess engineer in Detroit, MI is $116,400.00, according to ZipRecruiter salary data. Most workers in this role earn between $89,700.00 and $143,700.00 per year, depending on experience, location, and employer.

What is a BESS engineer?

A BESS Engineer is a professional who specializes in the design, implementation, and maintenance of Battery Energy Storage Systems (BESS). These engineers work on integrating battery storage solutions with renewable energy sources, such as solar or wind, to improve energy reliability and grid stability. Their responsibilities may include system modeling, project management, safety compliance, and performance optimization. BESS Engineers play a crucial role in advancing clean energy technologies and supporting the transition to sustainable power systems.

What are the key skills and qualifications needed to thrive as a BESS engineer?

To thrive as a BESS Engineer, you need a solid background in electrical engineering, energy storage technologies, and system integration, often supported by an engineering degree and relevant experience. Familiarity with SCADA systems, battery management software, and certifications such as Professional Engineer (PE) or relevant safety credentials is typically required. Strong problem-solving skills, attention to detail, and effective communication are valuable soft skills for collaborating with multidisciplinary teams and stakeholders. These skills ensure the safe, efficient, and reliable design and operation of battery energy storage solutions in the rapidly evolving energy sector.

How does a BESS engineer typically collaborate with project managers and electricians during the deployment of battery energy storage systems?

A BESS Engineer frequently works closely with project managers to ensure that project timelines, budgets, and technical specifications are met throughout the deployment process. They coordinate with electricians and installation teams to oversee system integration, troubleshoot onsite issues, and verify that all electrical connections and safety standards are adhered to. Effective communication and problem-solving skills are essential, as the BESS Engineer often acts as a technical liaison between the design phase and hands-on implementation, ensuring smooth project execution.

What is the difference between Bess Engineer vs Mechanical Engineer?

AspectBess EngineerMechanical Engineer
Required CredentialsBachelor's in Electrical, Electronics, or related fields; certifications in BESS systemsBachelor's in Mechanical Engineering; professional engineering license often preferred
Work EnvironmentRenewable energy projects, power plants, energy storage facilitiesManufacturing, automotive, aerospace, energy sectors
Industry UsageEnergy storage, renewable energy, power systemsMechanical design, manufacturing, HVAC, automotive

The main difference between a Bess Engineer and a Mechanical Engineer lies in their specialization. Bess Engineers focus on energy storage systems and renewable energy projects, requiring specific knowledge of battery energy storage technologies. Mechanical Engineers have a broader scope, working on mechanical systems across various industries. While both roles require engineering degrees, their work environments and industry applications differ significantly.

How to become a BESS engineer?

To become a BESS (Battery Energy Storage System) engineer, you typically need a bachelor's degree in electrical engineering, mechanical engineering, or a related field. Gaining experience with power systems, battery technologies, and control systems, along with certifications in relevant areas such as project management or electrical safety, can enhance your qualifications. Familiarity with industry standards and hands-on experience with BESS design, installation, or maintenance are also valuable.

What are popular job titles related to Bess Engineer jobs in Detroit, MI?

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What job categories do people searching Bess Engineer jobs in Detroit, MI look for?

The top searched job categories for Bess Engineer jobs in Detroit, MI are:

What cities near Detroit, MI are hiring for Bess Engineer jobs?

Cities near Detroit, MI with the most Bess Engineer job openings:

Infographic showing various Bess Engineer job openings in Detroit, MI as of August 2026, with employment types broken down into 90% Full Time, 6% Part Time, and 4% Contract. Highlights an 87% Physical, 4% Hybrid, and 9% Remote job distribution, with an average salary of $125,703 per year, or $60.4 per hour.

Battery Life Model Development and Analysis Engineer, Ford Energy

Ford Motor Company

Dearborn, MI • On-site

Full-time

Medical, Dental, Vision, Life, PTO

Posted 10 days ago


Ford Motor Company rating

7.6

Company rating: 7.6 out of 10

Based on 527 frontline employees who took The Breakroom Quiz

11th of 45 rated automakers


Job description


Ford Energy is a newly formed, wholly-owned subsidiary of Ford Motor Company dedicated to accelerating U.S. energy independence. Leveraging Ford's century of manufacturing excellence and world-class battery energy storage systems (BESS) technology, Ford Energy designs, manufactures, and services grid-scale and commercial DC battery energy storage systems (BESS). Ford Energy is uniquely positioned to capture the growing demand for reliable, US-built energy storage systems. We are not just building batteries; we are building the infrastructure for the next generation of the American grid.
Why Ford Energy?
At Ford Energy, you have the backing of an industrial manufacturing powerhouse with the agility of a dedicated energy startup offering industry leading technology. We offer a competitive compensation package including performance-based bonuses, Ford vehicle discounts, and the opportunity to shape the energy strategy of one of the world's most iconic brands. Learn more at https://fordenergy.com.
In this position...
The Battery Cell Simulation Engineer is responsible for developing and applying advanced electrochemical models (P2D/P4D) to understand battery cell performance, degradation, and lifetime behavior, with direct linkage to system-level life prediction for Battery Energy Storage Systems (BESS).
This role builds physics-based cell models to quantify degradation mechanisms and translate them into system-level life simulation inputs, enabling accurate warranty estimation and augmentation strategies. The position acts as a key bridge between cell-level electrochemistry and BESS system performance, supporting data-driven decisions on durability, reliability, and lifecycle cost optimization.
Responsibilities
What you'll do...
  • Electrochemical Modeling (Primary Focus)
    • Develop and apply high-fidelity electrochemical models, including P2D/P4D lithium-ion battery models and reduced-order models for system integration.
    • Simulate reaction kinetics and transport phenomena, lithium concentration gradients and overpotential, and internal current density and utilization distribution.
    • Evaluate cell capability limits, including power and energy capability, SOC-dependent performance, and rate limitations under different conditions.
  • Cell-Level Life & Degradation Modeling
    • Develop physics-based models to predict cell degradation, including SEI growth and side reactions, lithium plating risk and conditions, and loss of active material and impedance growth.
    • Quantify capacity fade and resistance increase over life, and sensitivity to temperature, SOC window, and cycling conditions.
    • Support cell design trade-offs and degradation mitigation strategies.
  • Thermal-Electrochemical Coupling
    • Develop coupled electrochemical-thermal models, including heat generation from electrochemical reactions and temperature-dependent kinetics and degradation.
    • Analyze cell temperature gradients and hot spots, and thermal impact on performance and aging.
    • Provide heat generation and degradation sensitivity inputs for system-level modeling.
  • Manufacturing Variation & Cell Behavior
    • Incorporate manufacturing-induced variations into cell models, including electrode thickness and loading variation, porosity and density variation from calendaring, and microstructural heterogeneity.
    • Evaluate impact of process variation on performance distribution, and manufacturing defects on degradation and life.
    • Support translation of modeling insights into process control targets and cell consistency and quality improvements.
  • System-Level Life Modeling Interface (BESS Integration)
    • Translate cell-level model outputs into system-level inputs for BESS simulations, including degradation rates under varying duty cycles and temperature and usage sensitivities.
    • Support development of system-level life prediction models and duty cycle-based aging simulations.
    • Collaborate with system and CAE teams to ensure consistent model integration and proper scaling from cell to pack to system.
  • Warranty Estimation & Augmentation Strategy Support
    • Provide modeling inputs for warranty projections (capacity retention, degradation limits) and performance degradation over service life.
    • Support evaluation of BESS augmentation strategies (e.g., module replacement, capacity add-back) and trade-offs between degradation, performance, and cost.
    • Enable data-driven decisions on lifecycle management and total cost of ownership (TCO).
  • Model Calibration & Validation
    • Calibrate models using experimental data, including cycling and aging tests, and EIS, rate capability, and thermal data.
    • Validate performance and degradation predictions vs. test data.
    • Conduct sensitivity analysis, parameter estimation, and uncertainty quantification.
  • Cross-Functional Collaboration
    • Work closely with the Ford Battery Modeling Team and BESS system and controls teams.
    • Support external suppliers with model alignment and parameterization.
    • Translate detailed electrochemical insights into system-level engineering decisions.

Qualifications
You'll have...
  • Bachelor's degree in Chemical Engineering, Mechanical Engineering, Materials Science, Physics, or related field.
  • 3+ years (MS) or 5+ years (BS) of experience in battery modeling or related fields.
  • Strong expertise in electrochemical modeling (P2D or equivalent) and lithium-ion battery fundamentals.

Even Better, you may have...
  • Master's or PhD in relevant discipline.
  • Experience with P2D/P4D electrochemical models and battery degradation and life modeling.
  • Familiarity with system-level battery life modeling (BESS or EV) and warranty or lifecycle analysis.
  • Understanding of thermal-electrochemical coupling and battery cell manufacturing effects.
  • Technical Skills
    • Simulation tools: COMSOL Multiphysics or equivalent.
    • Programming: Python, MATLAB.
    • Strong knowledge of electrochemical systems and transport phenomena, battery degradation mechanisms, and thermal effects in battery cells.
  • Key Competencies
    • Electrochemical Modeling Depth - expertise in P2D/P4D and physical interpretation.
    • Degradation & Life Prediction - strong understanding of aging mechanisms and lifetime modeling.
    • Cell-to-System Translation - ability to convert cell physics into system-level life predictions.
    • Multiphysics Integration - electrochemical-thermal coupling capability.
    • Analytical Problem Solving - identifies drivers of degradation and performance variation.
    • Collaboration - works across cell, system, and CAE teams.
    • Communication - translates complex models into actionable insights.
  • Location & Travel
    • Location: Dearborn, MI

You may not check every box, or your experience may look a little different from what we've outlined, but if you think you can bring value to Ford Motor Company, we encourage you to apply!
As an established global company, we offer the benefit of choice. You can choose what your Ford future will look like: will your story span the globe, or keep you close to home? Will your career be a deep dive into what you love, or a series of new teams and new skills? Will you be a leader, a changemaker, a technical expert, a culture builder...or all of the above? No matter what you choose, we offer a work life that works for you, including:
• Immediate medical, dental, vision and prescription drug coverage
• Flexible family care days, paid parental leave, new parent ramp-up programs, subsidized back-up child care and more
• Family building benefits including adoption and surrogacy expense reimbursement, fertility treatments, and more
• Vehicle discount program for employees and family members and management leases
• Tuition assistance
• Established and active employee resource groups
• Paid time off for individual and team community service
• A generous schedule of paid holidays, including the week between Christmas and New Year's Day
• Paid time off and the option to purchase additional vacation time.
This position is a salary grade 6 and ranges from $74,300-$124,500.,
This position is a salary grade 7 and ranges from $86,600-$144,900.
This position is a salary grade 8 and ranges from $99,100-$166,200.
Final determination of salary grade will be based on candidate's skills and experience, and base salary will be set within the applicable range according to job scope, responsibility and competitive market value.
For more information on salary and benefits, click here: https://fordcareers.co/GSR
Visa sponsorship is not available for this position.
Company: As Ford establishes a wholly owned subsidiary focused on Battery Energy Storage Systems, this role will initially be employed by Ford and is expected to transition to the subsidiary within one year.
Candidates for positions with Ford Motor Company must be legally authorized to work in the United States. Verification of employment eligibility will be required at the time of hire.
We are an Equal Opportunity Employer. All qualified applicants will receive consideration for employment without regard to race, religion, color, age, sex, national origin, sexual orientation, gender identity, disability status or protected veteran status. In the United States, if you need a reasonable accommodation for the online application process due to a disability, please call 1-888-336-0660.
This position is hybrid with a requirement to be onsite four or more days per week.
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