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Power System Planning Engineer Jobs in Florida (NOW HIRING)

Electrical Controls Engineer - Power

Tallahassee, FL · On-site

$76K - $101K/yr

Power Controls Engineer (Power Industry) Position Type: Full-Time Industry Focus: Power Delivery ... Key Responsibilities Power System Controls & Communications * Design and support SCADA, substation ...

Electrical Controls Engineer - Power

Miami, FL · On-site

$76K - $102K/yr

Power Controls Engineer (Power Industry) Position Type: Full-Time Industry Focus: Power Delivery ... Key Responsibilities Power System Controls & Communications * Design and support SCADA, substation ...

Electrical Controls Engineer - Power

Orlando, FL · On-site

$74K - $99K/yr

Power Controls Engineer (Power Industry) Position Type: Full-Time Industry Focus: Power Delivery ... Key Responsibilities Power System Controls & Communications * Design and support SCADA, substation ...

Power Controls Engineer (Power Industry) Position Type: Full-Time Industry Focus: Power Delivery ... Key Responsibilities Power System Controls & Communications * Design and support SCADA, substation ...

Electrical Controls Engineer - Power

Sarasota, FL · On-site

$77K - $103K/yr

Power Controls Engineer (Power Industry) Position Type: Full-Time Industry Focus: Power Delivery ... Key Responsibilities Power System Controls & Communications * Design and support SCADA, substation ...

Showing results 41-60

Power System Planning Engineer information

Are power system planning engineers in high demand?

Power system planning engineers are in high demand due to the growing need for reliable and efficient electrical grids, especially with the integration of renewable energy sources. The role often requires knowledge of grid modeling, load forecasting, and power system analysis, and employment opportunities are expected to grow as the energy sector expands and modernizes.

What is the difference between Power System Planning Engineer vs Power System Operations Engineer?

AspectPower System Planning EngineerPower System Operations Engineer
CredentialsBachelor's or Master's in Electrical Engineering, relevant certificationsBachelor's in Electrical Engineering, operational certifications
Work EnvironmentDesigning and analyzing future power system expansions, planning grid reliabilityMonitoring and controlling current power system operations, real-time decision making
Industry UsageUtility companies, energy consultancies, grid operatorsUtility companies, grid control centers, energy providers

Power System Planning Engineers focus on designing and planning future power grid infrastructure, while Power System Operations Engineers manage real-time system performance. Both roles require electrical engineering expertise but differ in their daily tasks and objectives.

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

To thrive as a Power System Planning Engineer, you need a solid background in electrical engineering, power systems analysis, and typically a bachelor's or master's degree in electrical engineering. Familiarity with specialized software such as PSS®E, ETAP, or PowerWorld, as well as knowledge of relevant industry standards and regulatory requirements, is essential. Strong analytical thinking, problem-solving abilities, and effective communication skills help you collaborate with stakeholders and present technical findings clearly. These skills are crucial for ensuring reliable, efficient, and future-ready electrical grids that meet growing energy demands.

What is a power system planning engineer?

Power System Planning Engineers are professionals who design, analyze, and plan the development of electrical power systems. Their work ensures that power generation, transmission, and distribution networks can meet current and future energy demands reliably and efficiently. They use specialized software and modeling techniques to assess system capabilities, forecast growth, and recommend upgrades or new infrastructure. These engineers also consider factors like renewable integration, regulatory standards, reliability, and cost-effectiveness in their planning process.

What are some common challenges faced by power system planning engineers when integrating renewable energy sources into the grid?

Power System Planning Engineers often encounter challenges such as maintaining grid stability, managing variability in power generation, and ensuring adequate transmission capacity when integrating renewable energy sources. Balancing supply and demand becomes more complex due to the intermittent nature of renewables like wind and solar. Additionally, engineers must coordinate with multiple stakeholders—including utility companies, regulatory bodies, and equipment manufacturers—to develop solutions that meet technical, economic, and regulatory requirements.
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Infographic showing various Power System Planning Engineer job openings in Florida 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.

Electrical Distribution Engineer, Principal

Gainesville Regional Utilities

Gainesville, FL • On-site

$125K - $154K/yr

Full-time

Posted 14 days ago


Job description

FLSA Exemption Status

Exempt

The Electrical Distribution Engineer, Principal Engineer provides strategic technical leadership and advanced engineering expertise in the planning, design, operation, and maintenance of the electric system. This position serves as a subject matter expert and key advisor to leadership, ensuring the reliability, safety, and regulatory compliance of transmission and distribution infrastructure while supporting the utility’s mission of delivering safe, reliable, and cost-effective electric service to the community.


Examples of Work

Essential Functions:

Leads the planning, design, and analysis of electric transmission and distribution systems, overhead and underground distribution, and related infrastructure.

Provides technical oversight and guidance on complex engineering projects, system upgrades, and capital improvement initiatives.

Performs and reviews advanced engineering studies, including load flow, short circuit, coordination, voltage regulation, and system reliability analyses.

Develops, maintains, and approves engineering standards, specifications, and construction designs to ensure system consistency and safety.

Serves as a technical advisor to leadership, operations, and field personnel on system performance, reliability, and engineering best practices.

Supports system reliability by leading incident investigations, conducting root cause analysis, and implementing corrective actions.

Ensures compliance with all applicable regulatory requirements and industry standards (e.g., NESC, IEEE, OSHA, and state/local/internal regulations).

Collaborates with operations, construction, maintenance, and external agencies to ensure efficient project execution and system performance.

Leads or supports long-term system planning, including load forecasting, infrastructure modernization, and grid resiliency initiatives.

Evaluates and implements emerging technologies, including smart grid applications, automation, and distributed energy resources.


Examples of Work (continued)

Non-Essential Functions:

Will be required to respond under emergency conditions.

Performs other related duties as assigned.

May act in absence of manager.


Education

Bachelor’s degree in Electrical Engineering from an ABET-accredited institution.

Master’s degree in Electrical Engineering or related field preferred.


Experience

At least eight (8) years of progressively responsible experience in electric utility engineering including leading the planning, design, and analysis of electric transmission and distribution systems and providing technical oversight and guidance on complex capital projects.

OR an equivalent combination of education or experience.


GRU Competencies

Adaptability, Flexibility, Fostering Innovation

Contributes to Achieving GRU's Mission: GRU will provide safe, reliable, competitive utility services in an environmentally responsible manner and will actively contribute to the enhancement of the quality of life in our community

Customer Focus


Role Specific Competencies

Problem-solving, Analysis, & Reasoning

Professional Technical Competency

Self-Management


Certifications

None


Knowledge, Skills, and Abilities

Advanced knowledge of power system engineering principles, practices, and standards.

Extensive knowledge of electric utility systems, protection schemes, and overhead/underground distribution systems.

Strong analytical, problem-solving, and decision-making skills.

Ability to lead complex technical initiatives and influence organizational direction.

Strong understanding of regulatory compliance and public utility operations.

Effective communication skills, including the ability to present technical information to non-technical stakeholders, leadership, and governing boards.

Ability to build collaborative relationships across departments and with external partners.

Demonstrated leadership, mentoring, and team development capabilities.

Familiarity with power system analysis tools (e.g., ETAP, CYME, Synergi, or similar).

Knowledge of and experience with grid modernization, renewable integration, and resiliency planning.

Demonstrated ability to mentor junior engineers and provide technical leadership across the organization.

Knowledge of public sector procurement processes and capital project management preferred.


Knowledge, Skills, and Abilities (continued)Physical Requirements
  • Climbing - Occasionally
  • Driving - Often
  • Far Vision Acuity - Often
  • Fine Manipulation - Often
  • Foot or Leg Controls - Often
  • Gross Manipulation - Occasionally
  • Hearing - Often
  • Keyboarding - Often
  • Lifting or Carrying>50 lbs. - Rarely/Never
  • Near Visual Acuity - Often
  • Normal Color Vision - Often
  • Peripheral Vision - Often
  • Pushing or Pulling > 50 lbs.  - Rarely/Never
  • Reaching Above Shoulder Level - Occasionally
  • Reaching Overhead-Rarely/Never
  • Sitting - Often
  • Speaking - Often
  • Standing or Walking - Often
  • Stooping, Kneeling, or Crawling - Occasionally

Environmental Requirements

Required to work during emergency conditions.

Work requires performance of tasks outdoors under varying climatic conditions.