Electrical Distribution Engineer IV
Job Description
Exempt
\nThe Electrical Distribution Engineer IV provides engineering support for the planning, design, operation, maintenance, reliability, and continuous improvement of the utility’s electric transmission and distribution system. This position supports capital projects, system studies, equipment specifications, outage response, regulatory compliance, and long-range infrastructure strategies to ensure the safe, reliable, and cost-effective delivery of electric service.
\n\n
This is a senior-level engineer who leads complex studies and projects, provides technical oversight, and serves as a subject matter resource for Energy Delivery engineering initiatives.
\nMay underfill based on experience.
\nExamples of Work\n
Designs and develops Energy Delivery infrastructure projects, feeders, protection schemes, voltage conversion projects, line extensions, and system upgrades.
\nPerforms engineering analyses and power system studies, including load flow, voltage drop, fault current, relay coordination, arc flash, reliability, and contingency assessments.
\nPrepares and reviews construction packages, including drawings, specifications, bills of material, switching plans, and cost estimates.
\nSupports system reliability and resilience efforts by identifying capacity constraints, aging infrastructure risks, and opportunities for modernization.
\nProvides technical support during outages and emergencies, including root cause analysis, restoration strategies, and corrective action recommendations.
\nCoordinates with operations, field crews, system control, and contractors to ensure constructability, safety, and operational readiness of projects.
\nDevelops equipment and material standards for transformers, breakers, conductors, protective devices, underground systems, and smart grid technologies.
\nEnsures compliance with applicable standards and regulations, including NESC, IEEE, OSHA, environmental requirements, and internal utility standards.
\nManages project schedules, budgets, and engineering deliverables for assigned capital and maintenance projects.
\nLeads or supports continuous improvement initiatives, including system automation, distributed energy integration, GIS/model accuracy, and asset management programs.
\nServes as lead engineer for major projects and complex technical issues, and mentors lower-level engineers.
\nInfluences long-term infrastructure strategy, reliability initiatives, and engineering best practices.
\nExamples of Work (continued)\n
Will be required to respond under emergency conditions.
\nPerforms other related duties as assigned.
\nMay act in absence of supervisor.
\nEducation\n
A Bachelor’s degree in Electrical Engineering from an ABET-accredited institution is required.
\nCandidates with other engineering degrees and relevant distribution system experience may also be considered
\nExperience\n
At least six (6) years of progressively responsible experience in electric utility engineering including experience leading complex capital projects, advanced system studies, and technical standards development. Demonstrated ability to mentor junior engineers and provide technical leadership across the department.
\nOR an equivalent combination of education or experience.
\nGRU Competencies\n
Adaptability, Flexibility, Fostering Innovation
\nContributes 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
\nCustomer Focus
\nRole Specific Competencies\n
Problem-solving, Analysis, & Reasoning
\nSelf-Management
\nProfessional Technical Competency
\nCertifications\n
None
\nKnowledge, Skills, and Abilities\n
Knowledge of electric utility transmission and distribution systems, including overhead and underground distribution expansions.
\nKnowledge of power system engineering principles, including three-phase systems, fault analysis, grounding, voltage regulation, and equipment ratings.
\nSkill in engineering software and modeling tools, such as Synergi, ETAP, EasyPower, PLS-CADD, AutoCAD, GIS, or equivalent systems.
\nAbility to interpret and develop technical drawings, one-lines, schematics, and specifications.
\nKnowledge of utility safety and engineering standards, including NESC, NEC, IEEE, and OSHA requirements.
\nProject management and organizational skills with the ability to prioritize multiple assignments and meet deadlines.
\nStrong analytical and problem-solving skills with sound engineering judgment and risk-based decision-making.
\nEffective written and verbal communication skills, including the ability to explain technical concepts to operational and executive audiences.
\nAbility to build collaborative relationships with field operations, contractors, consultants, regulators, and internal stakeholders.
\nAbility to work effectively during system emergencies and restoration events, including after-hours support when required.
\nKnowledge, Skills, and Abilities (continued)\n
Physical Requirements\n
- \n
- Climbing - Occasionally \n
- Driving - Often \n
- Far Vision Acuity - Often \n
- Fine Manipulation - Often \n
- Foot or Leg Controls - Often \n
- Gross Manipulation - Occasionally \n
- Hearing - Often \n
- Keyboarding - Often \n
- Lifting or Carrying>50 lbs. - Rarely/Never \n
- Near Visual Acuity - Often \n
- Normal Color Vision - Often \n
- Peripheral Vision - Often \n
- Pushing or Pulling > 50 lbs. - Rarely/Never \n
- Reaching Above Shoulder Level - Occasionally \n
- Reaching Overhead-Rarely/Never \n
- Sitting - Often \n
- Speaking - Often \n
- Standing or Walking - Often \n
- Stooping, Kneeling, or Crawling - Occasionally \n
May be required to work and attend meetings outside regular business hours.
\nRequired to work during emergency conditions.
\nWork requires performance of tasks outdoors under varying climatic conditions.
