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Battery Modeling Jobs in Boston, MA (NOW HIRING)

You will work hands‑on in Python and modern AI frameworks to develop production‑grade analytical models that address complex problems in battery performance, state‑of‑health estimation ...

You will work hands-on in Python and modern AI frameworks to develop production-grade analytical models that address complex problems in battery performance, state-of-health estimation, degradation ...

You will work hands-on in Python and modern AI frameworks to develop production-grade analytical models that address complex problems in battery performance, state-of-health estimation, degradation ...

Director, Energy Modeling * Travel requirements: Occasional travel as needed for client or team ... Track trends in renewable energy, battery storage, energy policy, and the retirement of ...

Director, Energy Modeling * Travel requirements: Occasional travel as needed for client or team ... Track trends in renewable energy, battery storage, energy policy, and the retirement of ...

Director, Energy Modeling * Travel requirements: Occasional travel as needed for client or team ... Track trends in renewable energy, battery storage, energy policy, and the retirement of ...

Director, Energy Modeling * Travel requirements: Occasional travel as needed for client or team ... Track trends in renewable energy, battery storage, energy policy, and the retirement of ...

Senior Data Scientist

Boston, MA · On-site

$140 - $200/hr

Stay current with advances in battery science, electrochemical modeling, grid storage economics, and ML for energy systems Requirements * 5+ years of experience in the energy industry, with a strong ...

A123 Systems, LLC is a leading developer and manufacturer of advanced batteries and battery systems ... Oversee data collection, modeling, and interpretation to drive material and performance ...

A123 Systems, LLC is a leading developer and manufacturer of advanced batteries and battery systems ... Oversee data collection, modeling, and interpretation to drive material and performance ...

We are at the forefront of revolutionizing battery creation, pioneering the integration of cutting ... Commercial Excellence: - Establish pricing, packaging, commercial models, and contracting ...

Showing results 21-40

Battery Modeling information

See Boston, MA salary details

$77.1K

$125.4K

$182K

How much do battery modeling jobs pay per year?

As of Aug 9, 2026, the average yearly pay for battery modeling in Boston, MA is $125,390.00, according to ZipRecruiter salary data. Most workers in this role earn between $103,200.00 and $141,200.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed for battery modeling?

To thrive in Battery Modeling, you need a strong background in electrochemistry, applied mathematics, physics, or engineering, often supported by an advanced degree in these fields. Proficiency in simulation tools such as MATLAB, COMSOL Multiphysics, or Python, and familiarity with battery management systems and modeling software are typically required. Strong analytical thinking, problem-solving abilities, and effective collaboration skills help set candidates apart. These capabilities are crucial for developing accurate battery models, driving innovation, and working effectively within multidisciplinary research or engineering teams.

What does someone in battery modeling do?

Professionals in Battery Modeling spend their days designing and simulating battery systems, analyzing test data, and refining computational models to predict battery performance and lifespan. They often collaborate with cross-functional teams including hardware engineers, chemists, and product designers to ensure models align with experimental results and real-world application needs. Regular responsibilities may also include preparing technical reports, staying updated on advances in battery technology, and supporting validation testing. This dynamic role offers a blend of independent analytical work and teamwork to drive impactful results in battery development.

What is battery modeling?

A Battery Modeling job involves developing and utilizing mathematical models to simulate the behavior, performance, and degradation of batteries. Engineers in this role create models to predict battery life, efficiency, and thermal characteristics, aiding in design optimization and system integration. They work with tools like MATLAB, Simulink, and machine learning techniques to simulate real-world conditions. Battery modelers collaborate with researchers and engineers to improve battery technology for applications in electric vehicles, renewable energy storage, and consumer electronics. The role requires expertise in electrochemistry, physics-based modeling, and data analysis.

What are the most commonly searched types of Battery Modeling jobs in Boston, MA? The most popular types of Battery Modeling jobs in Boston, MA are:
What cities near Boston, MA are hiring for Battery Modeling jobs? Cities near Boston, MA with the most Battery Modeling job openings:
Infographic showing various Battery Modeling job openings in Boston, MA as of August 2026, with employment types broken down into 86% Full Time, 11% Part Time, and 3% Contract. Highlights an 84% Physical, 4% Hybrid, and 12% Remote job distribution, with an average salary of $125,390 per year, or $60.3 per hour.

Senior Data Scientist - BESS

Power-Factors

Boston, MA • On-site

$140 - $200/hr

Other

Posted 24 days ago


Job description

ABOUT POWER FACTORS

Power Factors is a leading software and solutions provider supporting the next generation of clean energy through Unity, one of the most comprehensive and widely deployed Renewable Energy Management Suites (REMS) in the market. The company manages more than 300 GW of wind, solar, and energy storage assets globally, serving over 600 customers and 18,000 sites.

Power Factors' Unity REMS suite spans the full energy value chain — from supervision and control through advanced analytics and market analysis. Through open, data-driven applications, the platform enables renewable energy organizations to automate critical processes, integrate complex operational data, and make high-confidence decisions to optimize asset performance and lifecycle value.

Drawing on deep domain expertise, Power Factors deploys advanced analytics and AI at scale to enable asset owners and operators to improve reliability, availability, and long-term value as the global energy system transitions to clean energy.

Power Factors fights climate change with code.

For more information: powerfactors.com

ABOUT THE POSITION

As a Senior Data Scientist – BESS, you will lead the design and development of scientifically rigorous analytics solutions leveraging Power Factors' extensive operational data, covering more than 300 GW of renewable energy assets — including one of the world's largest battery energy storage datasets.

This role is centered on deep BESS domain expertise, advanced statistical and machine learning methods, and large-scale operational data. You will work hands‑on in Python and modern AI frameworks to develop production‑grade analytical models that address complex problems in battery performance, state‑of‑health estimation, degradation forecasting, dispatch optimization, and asset lifecycle management.

You will collaborate closely with software development teams, product management, and technically sophisticated customers to translate real‑world operational challenges into robust analytical solutions integrated into Power Factors' core platform. Your work will directly inform product capabilities used by leading BESS asset owners and operators globally.

This position offers the opportunity to apply advanced analytics at unprecedented scale to materially improve the performance and economics of battery energy storage assets worldwide.

ABOUT YOU

You are a senior-level data scientist and recognized BESS subject matter expert with substantial experience working with utility‑scale battery energy storage systems. You possess deep understanding of battery electrochemistry, BMS data, system‑level operations, performance drivers, degradation mechanisms, and grid service delivery — and you have applied advanced analytics to these challenges in real operational environments.

You are highly proficient in Python, statistical modeling, machine learning, and AI, with a track record of interpretable, physics‑informed, and operationally robust approaches. You are comfortable working with real‑world high‑frequency industrial time series and understand how analytical assumptions translate into operational and commercial decisions.

You work effectively with software engineers and are comfortable contributing to production‑quality code, reviewing model implementations, and discussing tradeoffs related to scalability, latency, and maintainability.

You are motivated by solving hard, real‑world problems in energy storage using advanced analytics and by seeing your work deployed at scale across large, diverse BESS fleets.

REQUIRED QUALIFICATIONS Industry Experience and BESS Expertise
  • 5+ years of experience in the energy industry, with a strong emphasis on utility‑scale battery energy storage systems
  • Deep, hands‑on understanding of BESS operation, performance, state‑of‑charge and state‑of‑health estimation, thermal management, degradation mechanisms, and lifecycle management
  • Demonstrated experience working with large‑scale operational BESS datasets, including BMS telemetry, SCADA, event logs, cycle data, and high‑frequency time series
  • Proven experience developing analytical solutions used by asset owners, operators, integrators, or OEM‑adjacent organizations to support operational and strategic decision‑making
Technical Skills
  • Proficiency in Python and modern data science libraries (pandas, NumPy, scikit‑learn, TensorFlow / PyTorch, etc.)
  • Strong grounding in statistics, machine learning, and applied AI, with demonstrated real‑world deployment experience
  • Experience with time‑series analysis, signal processing, anomaly detection, forecasting, and predictive modeling in industrial or electrochemical contexts
  • Experience with version control (Git) and collaborative software development practices
Collaboration and Communication
  • Ability to clearly communicate complex analytical concepts, assumptions, and results to both technical and non‑technical stakeholders
  • Experience working closely with software engineering teams in production environments (APIs, services, deployment pipelines)
  • Proven ability to translate operational challenges and
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