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Remote Smart Grid Research Jobs (NOW HIRING)

Overview About ERMCO Electric Research and Manufacturing Cooperative, Inc. (ERMCO) is the leading ... This role is remote within the following states: AZ, FL, GA, IL, KS, MA, MI, NC, NE, SD, TN, TX, WI ...

This is a remote position * Hours are assigned on a project-by-project basis. Work is not ... smart, scalable solutions for challenging projects. We are proud to be home to leading technical ...

Director, Research Services - Remote About Pulse Labs Pulse Labs, backed by Google and Amazon, is a ... across mobile, smart home, wearables, and automotive. The Role We are looking for a Director ...

Custom Research Director, Qual UXR US - Remote Role Description: As a Custom Research Director on ... smart research designs and comprehensive analysis plans. You will define the vision for reports ...

Controls Engineer (Remote)

Delaware, OH ยท On-site +1

$79K - $102K/yr

... reliable, grid-compliant, and resilient systems. The engineer serves as a technical authority ... Guide internal product development initiatives and research programs to introduce new solutions to ...

... Remote). You will be mainly accountable for: * Strategy / Business Planning : Creates, plans and ... Evaluates and shares customer research, market conditions and competitor data. * Value Proposition ...

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Remote Smart Grid Research information

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$111.5K

$206K

How much do remote smart grid research jobs pay per year?

As of Aug 7, 2026, the average yearly pay for remote smart grid research in the United States is $200,510.00, according to ZipRecruiter salary data. Most workers in this role earn between $205,000.00 and $205,000.00 per year, depending on experience, location, and employer.

What is remote smart grid research?

Remote Smart Grid Research involves studying, analyzing, and developing technologies for modern electricity grids using remote methods, such as online data analysis, simulations, and virtual collaboration. Researchers in this field focus on improving the efficiency, reliability, and sustainability of power systems by integrating digital communication, automation, and renewable energy sources. They may work on projects like demand response, grid security, or advanced metering, often collaborating with utilities, government agencies, or academic institutions from a distance. This work helps ensure the smart grid can adapt to future energy demands and technological advancements.

What are some common challenges faced by professionals working in remote smart grid research, and how can they be addressed?

Professionals in remote smart grid research often encounter challenges such as managing data from distributed sources, ensuring effective communication within remote teams, and staying updated with evolving technologies. Addressing these challenges typically involves adopting advanced data analytics tools, utilizing collaborative platforms for seamless teamwork, and participating in ongoing professional development. Additionally, establishing clear protocols for data sharing and regular virtual meetings can help maintain project alignment and productivity.

What are the key skills and qualifications needed to thrive in remote smart grid research?

To thrive in Remote Smart Grid Research, a strong background in electrical engineering, data analysis, and knowledge of smart grid technologies is essential, often supported by an advanced degree in engineering or a related field. Familiarity with simulation software (such as MATLAB/Simulink), SCADA systems, grid modeling tools, and relevant certifications like Professional Engineer (PE) can be highly beneficial. Excellent problem-solving, collaboration, and communication skills help researchers work effectively on multidisciplinary teams and convey complex technical findings. These competencies are crucial for developing innovative smart grid solutions, ensuring reliable energy management, and driving advancements in sustainable energy systems.

What is the difference between Remote Smart Grid Research vs Remote Power Systems Engineer?

AspectRemote Smart Grid ResearchRemote Power Systems Engineer
Required CredentialsEngineering degree, certifications in power systems or smart grid technologiesEngineering degree, certifications in power systems or related fields
Work EnvironmentResearch labs, universities, industry R&D teams, often collaborative and innovativeDesign, analysis, and implementation of power systems, often in utility or consulting settings
Employer & Industry UsageUtilities, research institutions, government agencies focused on smart grid advancementsUtilities, engineering firms, consulting companies involved in power system projects

Remote Smart Grid Research and Remote Power Systems Engineer roles share similar credentials and industry environments. However, research roles focus more on innovation and development within smart grid technologies, while power systems engineers concentrate on designing and maintaining existing power infrastructure. Both positions are vital in advancing and supporting modern energy systems remotely.

More about Remote Smart Grid Research jobs
What cities are hiring for Remote Smart Grid Research jobs? Cities with the most Remote Smart Grid Research job openings:
What are the most commonly searched types of Smart Grid Research jobs? The most popular types of Smart Grid Research jobs are:
What states have the most Remote Smart Grid Research jobs? States with the most job openings for Remote Smart Grid Research jobs include:
Infographic showing various Remote Smart Grid Research job openings in the United States as of August 2026, with employment types broken down into 1% As Needed, 86% Full Time, 11% Part Time, and 2% Contract. Highlights an 87% Physical, 3% Hybrid, and 10% Remote job distribution, with an average salary of $200,510 per year, or $96.4 per hour.

Data Center Infrastructure Validation - Innovation Lead

Electric Power Research Institute, Inc.

Charlotte, NC โ€ข On-site, Remote

$105K - $137K/yr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Re-posted 13 days ago


Job description

Job Title:Data Center Infrastructure Validation - Innovation LeadLocation:Charlotte, NC, Palo Alto, CA, Remote/Home Based, Washington, D.C.Job Summary and Description:

The Data Center Infrastructure Validation - Innovation Lead is a technical role responsible for designing, operating, and advancing EPRI's DCFlex Sandbox as the premier neutral validation environment for emerging datacenter and gridinteractive hardware technologies in the United States.

This role sits at the intersection of advanced engineering research, industry validation, and executive stakeholder engagement. The incumbent is a recognized technical authority who leads complex, firstofitskind validation efforts where precedent is limited, technical ambiguity is high, and creative, systemslevel thinking is required.

Reporting to the DCFlex Program Director, with executive sponsorship from senior EPRI leadership, the Innovation Lead represents EPRI internally and externally, shaping how utilities, hyperscalers, and technology innovators confidently adopt nextgeneration datacenter infrastructure.

Why This Role Exists:

DCFlex serves as a sandbox where emerging datacenter hardware-advanced cooling, power electronics, energy storage, modular systems, and AIenabled controls-can be evaluated under real grid conditions, against real operator requirements, with neutral, decisiongrade evidence.

The Innovation Lead owns the technical and strategic integrity of this sandbox, ensuring that EPRI's validation work:

  • Advances the state of knowledge in datacentergrid integration

  • Produces evidence trusted by utilities, operators, and regulators

  • Strengthens EPRI's leadership and credibility in AIera infrastructure

Key Responsibilities:

Technical Leadership & Research Oversight

  • Design and oversee complex validation programs and research studies that advance industry knowledge where causeandeffect relationships are not fully established.

  • Maintain deep, uptodate expertise in datacenter power systems, cooling technologies, energy storage, controls, AI workloads, and grid integration.

  • Translate cuttingedge research and technical judgment into published, decisiongrade validation outcomes for EPRI members.


Sandbox Curation & Program Ownership

  • Own the DCFLEX sandbox portfolio, maintaining a prioritized pipeline of emerging datacenter hardware technologies.

  • In partnership with EPRI Subject Matter Experts (SMEs) and the DCFlex Member Advisory Board, determine which technologies enter the sandbox, in what sequence, and under what validation scope.

  • Balance innovation breadth with execution depth to ensure effective use of validation resources.


Industry & Innovator Engagement

  • Build and sustain seniorlevel relationships with U.S. datacenter hardware innovators, including established OEMs, scaleups, and venturebacked startups.

  • Structure and manage innovators' entry into the sandbox, aligning expectations, validation protocols, and neutral measurement requirements.

  • Represent EPRI and DCFlex at industry forums, conferences, and technical convenings.


Member & Executive Collaboration:

  • Serve as a primary technical interface with utilities, hyperscalers, and datacenter operators participating in DCFlex.

  • Translate member needs and systemlevel pain points into sandbox priorities and validation designs.

  • Prepare and deliver executivelevel briefings, validation reports, and strategic recommendations for EPRI leadership and member executives.


CrossSector Leadership & Mentorship:

  • Contribute technical expertise across multiple EPRI projects and sectors as needed for effective utilization of specialized knowledge.

  • Coach and mentor developing technical staff and project teams, with or without direct management responsibility.

  • Lead or coordinate small, crosssector teams delivering advanced validation and research outputs.

What Success Looks Like:

  • Execution of highcredibility validation programs that influence deployment, procurement, standards, or regulatory discussions.

  • Recognition by members and external stakeholders as a trusted technical authority and neutral arbiter.

  • Effective translation of advanced research into actionable guidance for AIera datacenter infrastructure.

  • Strengthened EPRI technical leadership and visibility in datacenter flexibility and grid integration.

Qualifications:

Required:

  • Advanced degree in electrical engineering, mechanical engineering, computer science, or related scientific/engineering discipline (or equivalent experience).

  • Minimum 7+ years (10+ preferred) of experience in datacenter infrastructure, power technology, AI infrastructure, or related fields.

  • Demonstrated responsibility for highly specialized technical problems requiring original thinking and limited precedent.

  • Track record designing or overseeing structured validation, pilot, or testbed programs whose results informed realworld decisions.

  • Ability to operate effectively with senior subject matter experts as peers.

  • Exceptional written and verbal communication skills, including executivelevel technical briefing capability.

Preferred:

  • Graduate degree (MS, PhD, or MBA with strong technical foundation).

  • Experience working with utilities, hyperscalers, datacenter operators, or nationalscale research organizations.

  • Familiarity with grid flexibility, demand response, or datacenter participation in grid services.

  • Experience contributing to or interfacing with technical standards organizations.

The salary range for this position is $185,000 USD to $200,000 USD annually.This salary range is an estimate, and the actual salary may vary based on various factors, including without limitation applicant's education, experience, skills, and abilities, as well as internal equity and alignment with market data. The salary may also be adjusted based on applicant's geographic location.This role is eligible to participate in EPRI's annual incentive program. The amount of incentive varies and is subject to the terms and conditions of the plan.This role is eligible to participate in EPRI's standard employee benefit programs, which currently include the following: medical, dental, vision, 401k, STD/LTD and paid family leave, life and accident insurance, paid time off (flexible vacation, sick leave, and holiday pay).EPRI participates in E-Verify, an online system operated jointly by the Department of Homeland Security and the Social Security Administration (SSA). EPRI uses the system to check the work status of new hires by comparing information from the employee's I-9 form against SSA and Department of Homeland Security databases.EPRI is an equal opportunity employer. EEO/AA/M/F/VETS/DisabledTogether . . . Shaping the Future of Energy.www.epri.com