2

Remote Power System Study Engineer Jobs in Everett, MA

Senior Front-end Engineer

Boston, MA · On-site +1

$170K - $190K/yr

As a Senior Front-end Engineer, you'll help power Beacon's mission by building first-class web ... Beacon's robust asynchronous work practices ensure a first-class remote work experience, but we ...

Software Engineer, Product

Boston, MA · Remote

$140K - $160K/yr

Build the platform that will power every type of financial institution onboarding Prelim is seeking ... Build, enhance and fix the systems that seamlessly integrate with legacy bank infrastructure, core ...

Fully remote would be considered on a case-by-case basis. There is an identical senior level ... existing power generation projects including wind, solar, hydro, battery energy storage systems ...

Showing results 41-60

Remote Power System Study Engineer information

See Everett, MA salary details

$57.7K

$121.2K

$184.8K

How much do remote power system study engineer jobs pay per year?

As of Aug 22, 2026, the average yearly pay for remote power system study engineer in Everett, MA is $121,189.00, according to ZipRecruiter salary data. Most workers in this role earn between $100,900.00 and $138,000.00 per year, depending on experience, location, and employer.

What does a remote power system study engineer do?

A Remote Power System Study Engineer is responsible for analyzing and evaluating electrical power systems from a remote location. Their work involves performing studies such as load flow, short circuit, arc flash, and stability assessments to ensure the reliable and safe operation of power systems. They use specialized software to model electrical networks and identify potential issues or improvements. By working remotely, they collaborate with clients and teams through digital tools to deliver technical reports and solutions for projects in industries like utilities, manufacturing, and renewable energy.

What are the key skills and qualifications needed to thrive as a remote power system study engineer?

To thrive as a Remote Power System Study Engineer, you need a solid background in electrical engineering, power systems analysis, and a relevant engineering degree, often with a Professional Engineer (PE) license. Familiarity with specialized software such as PSS®E, ETAP, or DIgSILENT PowerFactory, and experience interpreting grid codes and standards, is typically required. Strong analytical thinking, effective communication, and the ability to collaborate remotely with cross-functional teams are essential soft skills. These competencies ensure accurate system studies, compliance with industry regulations, and efficient problem-solving for reliable power system operations.

How does a remote power system study engineer typically collaborate with utilities and project teams while working offsite?

As a Remote Power System Study Engineer, collaboration is primarily achieved through virtual meetings, shared technical documentation, and cloud-based modeling tools. You'll regularly interact with utility clients, project managers, and fellow engineers to discuss study requirements, review system models, and present findings. Effective communication and proactive scheduling are essential to ensure alignment on project goals and timely delivery of analyses, especially when working across different time zones. Building strong remote relationships and being adaptable with digital collaboration platforms are key to success in this environment.

What is the difference between Remote Power System Study Engineer vs Power Systems Analyst?

AspectRemote Power System Study EngineerPower Systems Analyst
CredentialsBachelor's or Master's in Electrical Engineering, relevant certifications (e.g., PE)Bachelor's or Master's in Electrical Engineering or related field, certifications optional
Work EnvironmentRemote or on-site, focused on power system studies and simulationsPrimarily office-based, analyzing power system data and performance
Industry UsageUtility companies, consulting firms, energy sectorUtilities, consulting, energy companies, research institutions

The Remote Power System Study Engineer primarily conducts detailed power system studies, simulations, and analysis to ensure grid stability and reliability. In contrast, the Power Systems Analyst focuses on analyzing existing power system data, performance metrics, and supporting decision-making. Both roles require electrical engineering credentials and often work within similar industries, but their core responsibilities differ in scope and focus.

Infographic showing various Remote Power System Study Engineer job openings in Everett, MA as of August 2026, with employment types broken down into 1% As Needed, 83% Full Time, 13% Part Time, and 3% Contract. Highlights an 92% Physical, 2% Hybrid, and 6% Remote job distribution, with an average salary of $121,189 per year, or $58.3 per hour.

Director, Grid Strategy & Utility Planning

Solar Landscape

Boston, MA • Remote

$170K - $220K/yr

Full-time

Re-posted 2 days ago


Job description

About Us
 
Solar Landscape is the leading commercial rooftop solar developer in the U.S. Only 4% of commercial rooftops host solar today — we’re changing that, fast. Commercial rooftop solar is the fastest, smartest way to build new clean power — delivering megawatts of generation in months, not years, and powering America’s energy and future right where it’s needed most. By turning rooftops into local power plants, we’re reshaping how — and how fast — energy gets built in the U.S.
 
Recognized as the #1 Distributed Generation Developer by New Project Media, the #1 National Commercial Rooftop Solar Developer by Solar Power World, and winner of the U.S. Department of Energy’s Grand Prize for Clean Energy, Solar Landscape is defining the future of energy generation in America.
 
Headquartered in Asbury Park, New Jersey, Solar Landscape has offices in Chicago, Baltimore, and New York City and operates in over a dozen states nationwide.
 
We move fast, solve hard problems, and take our work seriously — but never ourselves. We value clear thinking, accountability, and execution. At the same time, we’re collaborative by default, and believe the best work happens when people enjoy working together. Our team is made up of smart, grounded people who show up for each other — whether that’s troubleshooting a system design or catching up over lunch.
 
If you’re looking to do meaningful work in a high-performance environment — and be part of the team reshaping how energy gets built in the U.S. — we’d love to meet you.
 
About The Role

Solar Landscape is building the next phase of distributed energy, and the grid needs to evolve to support it.
We are seeking a senior power systems professional with deep experience in utility transmission and distribution planning, grid modernization, and distributed energy resource integration to lead the company’s grid strategy efforts.
Reporting to the Director of Interconnection, this role will evaluate how utility planning frameworks, infrastructure investments, and evolving grid constraints affect distributed solar and battery energy storage deployment across U.S. markets. The position will work directly with utilities and internal teams to unlock hosting capacity, advance DER integration strategies, and develop pilot initiatives such as DERMS, dynamic hosting capacity, flexible interconnection, and non-wire alternatives.
Key Responsibilities
  • Engage utility planning and engineering teams to identify and advance opportunities to increase hosting capacity on constrained circuits.
  • Build strong relationships across utility planning, asset management, engineering, operations, regulatory, and innovation teams.
  • Develop technically credible, data-driven proposals that align distributed energy deployment with utility reliability and planning objectives.
  • Identify, develop, and advance DERMS, dynamic hosting capacity, flexible interconnection, non-wire alternative, and other grid-modernization pilot opportunities.
  • Analyze hosting-capacity maps, load forecasts, infrastructure plans, capital programs, and system-planning studies to inform market and siting strategy.
  • Interpret integrated distribution plans, integrated resource plans, long-range transmission plans, and other utility planning filings.
  • Monitor feeder and substation constraints, system-upgrade programs, load growth, electrification trends, and planned utility investments.
  • Identify circuits and substations where targeted operational changes, grid technologies, or infrastructure investments could unlock additional DER capacity.
  • Provide strategic guidance on integrating distributed solar and battery energy storage systems within utility distribution networks.
  • Evaluate how operating requirements, export controls, tariffs, system limitations, and utility planning assumptions affect DER deployment.
  • Support interpretation of feasibility studies, system-impact studies, facility studies, and related utility planning data.
  • Provide input on point-of-interconnection strategy and system-integration considerations.
  • Track emerging grid technologies, including ADMS, DERMS, advanced inverters, digital twins, VPPs, microgrids, and grid-enhancing technologies.
  • Participate in utility working groups, regulatory forums, industry organizations, and technical conferences related to grid modernization and DER integration.
  • Support development, interconnection, policy, and New Markets teams with early-stage grid intelligence and utility-planning insight.
  • Translate utility planning information into clear recommendations for leadership and cross-functional teams.
Qualifications
  • Bachelor’s degree in Electrical Engineering, Power Systems, or a related field.
  • 10+ years of experience in electric utility planning, transmission or distribution engineering, grid modernization, or DER integration.
  • Deep understanding of utility planning methodologies, system constraints, reliability, infrastructure development, and capital planning.
  • Experience with distributed energy resources, renewable energy, battery energy storage, or advanced grid technologies.
  • Strong familiarity with utility planning studies, hosting-capacity analysis, interconnection impacts, and grid-modernization initiatives.
  • Demonstrated ability to influence utility stakeholders and advance new technical or operational approaches.
  • Strong written and verbal communication skills, including the ability to translate complex grid issues into actionable business recommendations.
  • Experience within a major electric utility, ISO/RTO, grid consulting firm, or adjacent energy organization strongly preferred.
  • Familiarity with PJM, NYISO, CAISO, ERCOT, MISO, or other major U.S. power markets preferred.
  • Experience advancing DERMS, dynamic hosting capacity, flexible interconnection, non-wire alternatives, or related pilots preferred.
  • Professional Engineer license or an advanced degree in power systems, energy policy, or a related discipline preferred.
Salary will vary depending on your location and job-related skills and experience. This is an incentive-based position with the potential to earn more. For part-time roles, your compensation will be adjusted to reflect your hours.
Benefits and Perks
 
We offer competitive compensation and benefits designed to support you inside and outside of work:
 
·       Training / Professional development opportunities
·       401(k) with 4% company match
·       Summer Fridays
·       Flexible remote/hybrid work options
·       Paid parental leave
·       Team lunches, events, and stocked kitchens
·       Modern, collaborative office spaces in Asbury Park, New York City, Boston, Chicago, and Baltimore
·       Medical, dental, and vision coverage
·       Company-paid life and long-term disability insurance
 
 
 
ADA Accommodation Statement
 
Solar Landscape is an Equal Opportunity Employer. We are committed to providing reasonable accommodations to qualified applicants and employees with disabilities. If you need a reasonable accommodation to participate in the application or interview process, please contact us at hr@solarlandscape.com.

We may use artificial intelligence (AI) tools to support parts of the hiring process, such as reviewing applications, analyzing resumes, or assessing responses and identifying potential inconsistencies or verification signals in application materials based on available information. These tools assist our recruitment team but do not replace human judgment. Final hiring decisions are ultimately made by humans. If you would like more information about how your data is processed, please contact us.