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Remote Microgrid Jobs in Georgia (NOW HIRING)

This position is remote and/or hybrid-friendly and can be performed from a wide range of locations ... Experience supporting projects in federal facilities, data centers, and microgrids. Work ...

This opportunity is remote and/or hybrid-friendly that can be performed from a wide range of ... Work includes federal, commercial, manufacturing, renewable energy, data centers, microgrids and ...

Remote Microgrid information

What is a remote microgrid?

A remote microgrid is a localized energy system that can operate independently from the main power grid, typically used in isolated or off-grid locations. It combines various energy sources, such as solar panels, wind turbines, batteries, and sometimes diesel generators, to provide reliable electricity to communities or facilities that are far from centralized power infrastructure. Remote microgrids are essential for improving energy access, resilience, and sustainability in remote areas. They help reduce reliance on fossil fuels and support the integration of renewable energy sources.

What are the key skills and qualifications needed to thrive as a remote microgrid engineer, and why are they important?

To thrive as a Remote Microgrid Engineer, you need a strong background in electrical engineering, renewable energy systems, and power management, typically supported by a relevant engineering degree. Familiarity with SCADA systems, energy management software, and certifications like Professional Engineer (PE) or microgrid-specific credentials are often required. Strong analytical thinking, problem-solving, and effective communication are essential soft skills for collaborating with remote teams and stakeholders. These competencies ensure the reliable design, implementation, and operation of microgrids in diverse and often challenging environments.

What are some common challenges faced by professionals working in remote microgrid roles, and how can they be addressed?

Professionals working with remote microgrids often encounter challenges such as limited access to on-site resources, unpredictable weather conditions affecting energy supply, and the need for reliable remote monitoring and control systems. Effective communication with local teams and stakeholders is essential, as is staying updated on the latest advancements in microgrid technologies. Addressing these challenges typically involves leveraging robust digital tools, developing contingency plans, and fostering strong collaboration with both technical and non-technical partners to ensure seamless operation and maintenance of the microgrid.

What is the difference between Remote Microgrid vs Remote Solar Technician?

AspectRemote MicrogridRemote Solar Technician
Required CertificationsMicrogrid certifications, electrical or renewable energy credentialsSolar PV installation, electrical certifications
Work EnvironmentDesign, maintenance, and operation of microgrid systems in remote locationsInstalling and maintaining solar panels in remote or on-site locations
Industry UsagePower systems, renewable energy, off-grid solutionsSolar energy, renewable energy, off-grid applications
Common Search/ComparisonRemote Microgrid vs Remote Solar Technician

The Remote Microgrid role focuses on designing, managing, and maintaining integrated power systems that combine various energy sources for remote areas. In contrast, a Remote Solar Technician specializes in installing and servicing solar panel systems. Both roles require renewable energy certifications and often operate in off-grid environments, but their specific responsibilities and technical focus differ.

What cities in Georgia are hiring for Remote Microgrid jobs?

Cities in Georgia with the most Remote Microgrid job openings:

Infographic showing various Remote Microgrid job openings in Georgia as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% Remote job distribution.

Principal Power Systems Engineer

RavenVolt, Inc

Cumming, GA • On-site, Remote

$140K/yr

Full-time

Re-posted 23 days ago


Job description

Position Overview
We are seeking a highly accomplished, technical Principal Power Systems Engineer with a minimum of 10 years of progressive experience in complex industrial power systems and/or utility-scale renewable generation infrastructure. This is a fully remote role designed for an independent, elite technical authority who can drive high-level engineering decisions from anywhere in the country, with minimal travel (approximately 10%) reserved only for critical project milestones.
In this role, you will serve as the final technical authority and engineer in responsible charge for comprehensive power systems analysis, protective relaying design, and infrastructure specification. The ideal candidate brings deep technical expertise in low-voltage (LV) and medium-voltage (MV) switchgear configurations, advanced power system modeling, and complex overcurrent and differential protective coordination schemes.
Pay: $140,000 - $ 165,000
The pay listed is the salary range for this position. Any specific offer will vary based on the successful applicant's education, experience, skills, abilities, geographic location, and alignment with market data.
Required Qualifications
  • Education: Bachelor of Science in Electrical Engineering (BSEE) from an ABET-accredited institution. A Master's degree with a power systems focus is a plus.
  • Experience: 10+ years of direct, hands-on experience performing power systems engineering for heavy industrial facilities or utility-scale renewable energy installations.
  • Licensure: Active Professional Engineer (P.E.) license in good standing. Ability to secure multi-state licensure via NCEES comity is highly preferred.
  • Software Proficiency: Power user capabilities in SKM Power*Tools and/or ETAP. Proficiency with AutoCAD for remote collaboration, review, and development of single-lines, three-lines, and physical layouts.
  • Technical Mastery:
    • Deep understanding of MV/LV switchgear, circuit breaker ratings, bus bar designs, and instrument transformer scaling (CT/PT metrics).
    • Comprehensive grasp of selective coordination principles, time-current curves (TCCs), cable damage curves, and transformer damage curves.
    • Familiarity with utility interconnection handbooks and industrial codes (NEC/NFPA 70, NFPA 70E, IEEE Color Books series, NESC).
  • Remote Work Capabilities: Self-motivated and highly organized. Proven ability to work independently, manage deliverables across multiple time zones, and maintain strong communication using digital collaboration tools (Teams, Slack, etc.).

Key Responsibilities
  • Power System Modeling & Analysis: Lead and execute advanced power system studies-including short-circuit, load flow, motor starting, transient stability, and arc flash hazard evaluations-utilizing industry-standard analytical software (e.g., SKM Power*Tools, ETAP) in a remote collaborative environment.
  • Protection & Coordination Design: Design, model, and calculate settings for complex selective protective coordination and equipment protection schemes. Formulate and implement settings for modern microprocessor-based relays, ensuring proper handling of ungrounded delta configurations (overvoltage detection), impedance-grounded, and solidly grounded systems.
  • Equipment Specification & Engineering: Author detailed technical procurement specifications and single-line/three-line drawings for LV/MV switchgear, power transformers, motor control centers (MCCs), and utility interconnect equipment. Review and approve vendor drawings, submittals, and factory acceptance testing (FAT) protocols.
  • Renewables & Industrial Integration: Lead electrical engineering design strategies for integrating utility-scale renewables (Solar PV, BESS, microgrids) or major industrial infrastructure. Navigate interconnect requirements, utility regulations, and multi-breaker protection challenges (e.g., complex lockout/86 relay topology).
  • Technical Authority & Mentorship: Act as the primary corporate engineering authority during project inception, feasibility studies, and detailed design phases. Provide remote mentorship to mid-level and junior electrical engineers, refining engineering standards and design templates across the department.
  • Focused Site Support (Up to 10% Travel): Travel occasionally to participate in critical face-to-face milestones, such as major equipment Factory Acceptance Testing (FAT), critical site commissioning, or essential physical field validations.

About RavenVolt, an ABM Company
RavenVolt is a turnkey energy solutions and construction (EPC) management provider, specializing in providing tailored onsite energy solutions to increase energy reliability and resilience while minimizing long-term operational costs. We are hyper-focused on delivering resilient, efficient, and sustainable microgrid systems that support a wide range of industries across the United States.
Our Expertise Includes:
  • Licensed to operate in 40 states
  • In-house design services with multi-state licensed engineers
  • A proven team that has completed thousands of projects nationwide
  • Dedicated in-house project management and construction personnel
  • National vendor relationships supporting all critical microgrid components

At RavenVolt, you'll be part of a team shaping the future of distributed energy and infrastructure through innovative, end-to-end solutions. About ABM

RavenVolt logo

About RavenVolt

Sourced by ZipRecruiter

Industry

Clean energy semiconductors manufacturing

Company size

51 - 200 Employees

Headquarters location

Alpharetta, GA, US

Year founded

2020