1

Power Scheduler Jobs in Georgia (NOW HIRING)

Sr. Scheduler

Atlanta, GA · On-site

$88K - $154K/yr

Proficient PC skills including proficiency in Microsoft Office Suite (i.e., Word, Excel, Power ... schedules, and holidays to fit your busy lifestyle! Parsons is an equal opportunity employer, and ...

Proficient PC skills including proficiency in Microsoft Office Suite (i.e., Word, Excel,Power Point ... schedules, and holidays to fit your busy lifestyle! Parsons is an equal opportunity employer, and ...

The Senior Construction Scheduler is responsible for developing, maintaining, and analyzing ... We serve a diverse clientele, including utilities, independent power producers, developers, and ...

New

The Senior Construction Scheduler is responsible for developing, maintaining, and analyzing ... We serve a diverse clientele, including utilities, independent power producers, developers, and ...

New

The Senior Construction Scheduler is responsible for developing, maintaining, and analyzing ... We serve a diverse clientele, including utilities, independent power producers, developers, and ...

New

next page

Showing results 1-20

Power Scheduler information

See Georgia salary details

$11

$18

$25

How much do power scheduler jobs pay per hour?

As of Sep 4, 2026, the average hourly pay for power scheduler in Georgia is $18.13, according to ZipRecruiter salary data. Most workers in this role earn between $15.24 and $19.71 per hour, depending on experience, location, and employer.

What is a power scheduler?

Power Schedulers are professionals responsible for planning and coordinating the delivery and usage of electrical power within utility companies or energy trading organizations. They ensure that power generation matches demand by scheduling energy resources and managing transmission between regions. Their work helps maintain grid reliability, optimize energy costs, and comply with regulatory requirements. Power Schedulers often use forecasting tools, market data, and real-time information to make informed decisions.

What are the key skills and qualifications needed to thrive as a power scheduler?

To thrive as a Power Scheduler, you need strong analytical abilities, an understanding of energy markets, and typically a degree in engineering, mathematics, or a related field. Familiarity with energy trading platforms, scheduling software (such as OATI or ETRM systems), and regulatory compliance tools is crucial. Excellent communication, time management, and problem-solving skills help in coordinating with various stakeholders and making fast, accurate decisions. These competencies ensure reliable electricity delivery, regulatory compliance, and optimal trading outcomes in a dynamic industry.

What are some common challenges faced by power schedulers, and how do they typically address them?

Power Schedulers often encounter challenges such as rapidly changing energy demands, fluctuating market prices, and the need to balance supply with contractual obligations. To manage these, they rely on specialized software, real-time data monitoring, and close communication with trading teams, power plant operators, and grid operators. Strong analytical skills and the ability to make quick, informed decisions under pressure are essential for success in this fast-paced environment.

What is the difference between Power Scheduler vs Maintenance Planner?

AspectPower SchedulerMaintenance Planner
Primary RoleScheduling power generation and grid operationsPlanning maintenance activities for equipment
CertificationsOften requires power industry certificationsTypically requires maintenance or engineering certifications
Work EnvironmentPower plants, grid control centersIndustrial facilities, manufacturing plants
Industry UsageElectric utility companies, energy providersManufacturing, industrial sectors

While both roles involve planning and scheduling, the Power Scheduler focuses on managing power generation and grid operations, whereas the Maintenance Planner concentrates on scheduling maintenance activities to ensure equipment reliability. Understanding these differences helps organizations assign the right responsibilities to each role.

How much does a power scheduler make?

A power scheduler typically earns between $50,000 and $90,000 annually, depending on experience, location, and the complexity of the power grid they manage. Entry-level positions may start lower, while experienced schedulers with certifications can earn higher salaries. The role often requires knowledge of energy markets, scheduling software, and regulatory compliance.
Infographic showing various Power Scheduler job openings in Georgia as of August 2026, with employment types broken down into 1% As Needed, 84% Full Time, 11% Part Time, 3% Contract, and 1% Nights. Highlights an 91% Physical, 3% Hybrid, and 6% Remote job distribution, with an average salary of $37,713 per year, or $18.1 per hour.

Power SystemsEngineer

Arseal Technologies LLC

Alpharetta, GA • On-site

Other

Medical, Retirement, PTO

Re-posted yesterday


Job description

Job Description
Job Description

POWER SYSTEMS ENGINEER

Job Description

Arseal Technologies is an engineering and technical services firm that supports clients in the power and energy sectors with practical, high-quality solutions. The company focuses on delivering reliable, cost-effective designs and consulting services for complete electrical and control power systems projects. Arseal fosters a professional environment that emphasizes technical excellence, integrity and continuous learning. The organization values engineers who are proactive, detail-oriented, and committed to solving real world power systems challenges.


Joining ARSEAL comes with perks that support you in your personal and professional journey:


• Make an impact:Our pace of work enables fast learning and fosters an environment where you can stretch yourself and make an impact.

Teamwork: Be inspired and encouraged by senior engineers and teammates to set goals and quickly develop within the company

Excellent health benefit and retirement investment programs

Flexible work schedules: Hybrid home and office options

• Total of 21 paid days off during the first year


The Power System Engineer will work on-site in Alpharetta, GA, in a full-time capacity with minimal supervision, supporting the design, analysis, and optimization of electrical power systems for industrial, utility, and commercial projects. Day-to-day responsibilities include performing power system studies such as load flow, short-circuit, protection coordination, and arc-flash analysis, modeling power networks and preparing technical reports and documentation. The engineer may also prepare equipment specifications, protection schemes, and provide recommendations to improve reliability, safety, and efficiency. This role also involves collaborating with cross-functional teams, interfacing with clients to understand project requirements and ensuring that designs comply with relevant codes, standards and best practices and contributes to the continuous improvement of departmental procedures and practices.


Experience:

  • Strong foundation in electrical engineering with experience in power systems and electric power
  • Hands-on experience in power systems analysis skills specifically using ETAP or SKM is a must have, preferably both
  • Demonstrated expertise in power distribution systems, electrical safety, and equipment specification Professional Engineer (P.E.) license preferred
  • Familiarity with industry compliance standards and codes such as NFPA, IEEE, et al, and relevant safety practices


Qualifications:


  • Bachelor of Science degree or higher in Electrical Engineering or related discipline from an accredited university
  • 5+ years of power system studies
  • Proficiency with power systems analysis software (e.g., ETAP, SKM or similar tools) is required
  • Strong analytical and problem-solving skills, attention to detail, and capacity to manage multiple projects
  • Ability to work on-site in Alpharetta, GA for collaboration with multidisciplinary teams and clients.
  • Capable of travel, up to 25%, on a case-by-case basis, to gather on-site data for modeling purposes, and for applying ArcFlash Hazard labels as required.