Protection & Control Commissioning Engineer
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Lead Protection & Control Commissioning Engineer

Lead daily pre-job briefs, perform job hazard analyses, promote safety and Human Performance Improvement (HPI) awareness, recognize error precursors, and accurately identify and apply HPI tools

Develop detailed, and often complex, testing and commissioning plans, including, but not limited to, identification of required testing, circuit isolation and restoration, project sequencing, construction coordination, scheduling, outage and energization planning, in-service checks, and associated roles and responsibilities

Oversee, coordinate, direct and assist other testing and commissioning personnel or electrical contractors

Perform hands-on testing and commissioning of medium and high voltage P&C systems and schemes, including IEC 61850

Read, interpret, troubleshoot, and effectively utilize electrical drawings and schematics during the testing and commissioning process to meet the design intent

Perform energization and in-service checks to validate electrical quantities

Approve P&C systems and equipment readiness for service

Prepare project tracking, progress and status reports and documentation

Prepare and maintain project logs, including discrepancies and issues and requests for information

Maintain and control an accurate set of commissioning drawings and project testing documentation

Interface with company Department Managers, Area Leads and Project Managers for active project support, proposals and budgets, estimating, scheduling, change order support, request for information, discrepancy logs, etc

Interface with Client or Owner’s Engineer field and engineering personnel

Testing and commissioning of electrical transmission and distribution, substation projects with voltage levels ranging from 15 kV to 500 kV

Transmission, generation, and distribution protection and control philosophies, schemes and applications

Transmission, generation, and distribution relays (ex. SEL, GE, Basler, Beckwith)

Testing and application of IEC 61850 standard and associated protocols is a must

Testing of microprocessor protective relays and schemes associated with, but not limited to, transmission lines, busses, power transformers, capacitor banks, feeders, breakers, etc

Microprocessor relay manufacturer proprietary software and associated functions and file management (ex. AcSELerator Quickset, GE Enervista/UR)

Relay settings and logic, settings basis documents and application intent

Relay test sets including, but not limited to, Omicron CMC 256/356 or Doble F6150 and associated software (ex. Doble ProTesT, Doble Protection Suite, ENOSERV RTS, Omicron Test Universe)

Functional testing of DC protection and control circuits and instrument transformer secondary circuits

Testing medium and high voltage substation apparatus including, but not limited to, instrument transformers, circuit breakers, transformers, and capacitor banks

Testing of AC and DC station service systems including, but not limited to, transfer switches, panelboards, battery systems and battery chargers

Substation apparatus test equipment including, but not limited to, Omicron, Doble, Alber, Megger, AEMC, Fluke, HV, DILO, Biddle, Vanguard, etc

Proven experience with Electrical Field-Testing standards, practices, and procedures such as NETA, IEEE, NFPA applicable standards

Highly proficient with technical writing, office automation, discipline-specific design software (i.e., Cymcap, CDEGS, WinIGS, PSSE, PSCAD, Aspen, SKM, ETAP), technology, math principles, predictive models, spreadsheets, and tools.

Ability to plan and conduct inspections and investigations on various aspects of the construction and design of facilities or structures, applying applicable regulations and policies

Demonstrated high-level of self-leadership with attention to detail, multi-tasking, and prioritization of responsibilities in a dynamic work environment.

Demonstrates competence and comprehensive knowledge concerning adjacent disciplines such as civil engineering, P&C, SCADA, and telecom.

Well-developed ability to make technical computations and calculations involving the application of electrical engineering principles, understanding plans and specifications, and making factual comparisons to the appropriate regulations.

Bachelor of Science in Electrical Engineering or Technology degree from an accredited school or university

Licensed Professional Engineer

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Approximately between 2.3 and 2.5 million schools globally, according to the latest available data from government and education ministry reports.


🔗 The challenges schools face: 2025/2026 🔗 USA ~ Public 98,500 ~ Private 30,000 ~ Total 128,500 🔗 Canada ~ Public 15,500 ~ Private 2,000 ~ Total 17,500 🔗 Brazil ~ Public 138,000 ~ Private 40,000 ~ Total 178,000 🔗 Vietnam ~ Public 42,000 ~ Private 8,000 ~ Total 50,000 🔗 China ~ Public 217,200 ~ Private 152,800 ~ Total 470,000 🔗 India ~ Public 1,022,386 ~ Private 335,844 ~ Total 1,358,230 🔗 Japan ~ Public 30,240 ~ Private included ~ Total 30,240 🔗 Morocco ~ Public 20,600 ~ Private 6,300 ~ Total 26,900 🔗 Indonesia ~ Public 390,718 ~ Private included ~ Total 390,718 🔗 Philippines ~ Public 47,831 ~ Private 13,000 ~ Total 60,831 🔗 Great Britain ~ Public 29,202 ~ Private included ~ Total 29,202 🔗 Australia ~ Public 9,653 ~ Private included ~ Total 9,653 🔗 Russia ~ Public 39,070 ~ Private included ~ Total 39,070 🔗 Germany ~ Public 31,039 ~ Private included ~ Total 31,039 🔗 Poland ~ Public 36,291 ~ Private included ~ Total 36,291 🔗 Iran ~ Public 80,000 ~ Private included ~ Total 80,000 🔗 France ~ Public 58,100 ~ Private included ~ Total 58,100 🔗 Mexico ~ Public 132,505 ~ Private included ~ Total 132,505

Use an estimated range of 200 to 400 students per school if student enrollment is the only available data.


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