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Occupation Profile for Power Plant Operators

Control, operate, or maintain machinery to generate electric power. Includes auxiliary equipment operators.


Significant Points

  • Job prospects are expected to be good as many workers retire and new plants are built.
  • Most entry-level workers start as helpers or laborers, and several years of training and experience are required to become fully qualified.
  • Familiarity with computers and a basic understanding of science and math is helpful for those entering the field.


$55,000.00 Median Annual Wage 1,000 Average Job Openings Per Year
0.7 Average Unemployment Percentage 36.1 Percentage That Completed High School
35,000 Employment Numbers in 2006 43.6 Percentage That Had Some College
36,000 Employment Numbers in 2016 (est.) 20.4 Percentage That Went Beyond College Degree

Sample Job Titles
Auxiliary Equipment Tender
Auxiliary Operator
Boiler Operator
Booster Operator
Booster Plant Operator
Booster Pump Operator
Control Center Operator
Control Operator
Control Room Operator
Diesel Plant Operator
Electric Operator
Equipment Operator
Firer, High Pressure
Generator Operator
Hydro Plant Operator
Hydro Station Operator
Hydroelectric Operator
Hydroelectric Station Operator
Operations and Maintenance Gas Turbine Technician
Operations and Maintenance Technician (O & M Technician)
Plant Control Operator
Power Operator
Power Plant Operator
Power Plant Technician
Power Station Operator
Powerhouse Attendent
Powerhouse Operator
Powerhouse Tender
Rectifier Operator
Station Operator
Station Tender
Stationary Engineer
Steam Turbine Operator
Turbine Operator
Turbine Room Attendant
Turbo Electric Operator
Turbo Operator
Unit Operator

  • These occupations usually involve using communication and organizational skills to coordinate, supervise, manage, or train others to accomplish goals. Examples include funeral directors, electricians, forest and conservation technicians, legal secretaries, interviewers, and insurance sales agents.
  • Most occupations in this zone require training in vocational schools, related on-the-job experience, or an associate's degree. Some may require a bachelor's degree.
  • Previous work-related skill, knowledge, or experience is required for these occupations. For example, an electrician must have completed three or four years of apprenticeship or several years of vocational training, and often must have passed a licensing exam, in order to perform the job.
  • Employees in these occupations usually need one or two years of training involving both on-the-job experience and informal training with experienced workers.

Power plant operators, dispatchers, and distributors generally need a combination of education, on-the-job training, and experience. Candidates with strong computer and technical skills are generally preferred.

Education and training. Employers often seek recent high school graduates for entry-level operator, distributor, and dispatcher positions. Workers with college or vocational school degrees will have more advancement opportunities, especially in nuclear power plants. Although it is not a prerequisite, many senior reactor operators have a bachelor’s degree in engineering or the physical sciences.

Workers selected for training as power plant operators or distributors undergo extensive on-the-job and classroom instruction. Several years of training and experience are required for a worker to become a fully qualified control room operator or power plant distributor.

In addition to receiving initial training to become fully qualified as a power plant operator, distributor, or dispatcher, most workers are given periodic refresher training—especially the nuclear power plant operators. Refresher training usually is taken on plant simulators designed specifically to replicate procedures and situations that might be encountered at the trainee’s plant.

Licensure. Power plant operators, distributors, and dispatchers may need licenses depending on jurisdiction and specific job function. Requirements vary greatly from place to place and may be administered by State, county, or local governments.

Extensive training and experience are necessary to pass the Nuclear Regulatory Commission (NRC) examinations required for nuclear reactor operators and senior nuclear reactor operators. Before beginning training, a nuclear power plant worker must have 3 years of power plant experience. At least 6 months of this must be on-site at the nuclear power plant where the operator is to be licensed. Training generally takes at least 1 year, after which the worker must take an NRC-administered examination. To maintain their licenses, reactor operators must pass an annual practical plant operation exam and a biennial written exam administered by their employers. Reactor operators can upgrade their licenses to the senior reactor operator level after a year of licensed experience at the plant by taking another examination given by the NRC. Training may include simulator and on-the-job training, classroom instruction, and individual study. Experience in other power plants or with Navy nuclear propulsion plants also is helpful.

Advancement. Most entry-level workers start as helpers or laborers and advance to more responsible positions as they become comfortable in the plant. In many cases, there are mandatory waiting times between starting a position and advancing to the next level due to licensing requirements. With sufficient training and experience, workers can become shift supervisors or, in nuclear power plants, senior reactor operators.

Because power plants have different systems and safety mechanisms, it is often very difficult to advance by changing companies or plants. Most utilities promote from within; most workers advance within a particular plant or by moving to another plant owned by the same utility.

Nature of Work

Electricity is vital for most everyday activities. From the moment you flip the first switch each morning, you are connecting to a huge network of people, electric lines, and generating equipment. Power plant operators control the machinery that generates electricity. Power plant distributors and dispatchers control the flow of electricity from the power plant, over a network of transmission lines, to industrial plants and substations, and, finally, over distribution lines to residential users.

Power plant operators control and monitor boilers, turbines, generators, and auxiliary equipment in power-generating plants. Operators distribute power demands among generators, combine the current from several generators, and monitor instruments to maintain voltage and regulate electricity flows from the plant. When power requirements change, these workers start or stop generators and connect or disconnect them from circuits. They often use computers to keep records of switching operations and loads on generators, lines, and transformers. Operators also may use computers to prepare reports of unusual incidents, malfunctioning equipment, or maintenance performed during their shift.

Operators in plants with automated control systems work mainly in a central control room and usually are called control room operators or control room operator trainees or assistants. In older plants, the controls for the equipment are not centralized; switchboard operators control the flow of electricity from a central point, while auxiliary equipment operators work throughout the plant, operating and monitoring valves, switches, and gauges.

In nuclear power plants, most operators start working as equipment operators or auxiliary operators. They help the more senior workers with equipment maintenance and operation while learning the basics of plant operation. With experience and training they may be licensed by the Nuclear Regulatory Commission as reactor operators and authorized to control equipment that affects the power of the reactor in a nuclear power plant. Senior reactor operators supervise the operation of all controls in the control room. At least one senior operator must be on duty during each shift to act as the plant supervisor.

Power distributors and dispatchers, also called load dispatchers or systems operators, control the flow of electricity through transmission lines to industrial plants and substations that supply residential needs for electricity. They monitor and operate current converters, voltage transformers, and circuit breakers. Dispatchers also monitor other distribution equipment and record readings at a pilot board—a map of the transmission grid system showing the status of transmission circuits and connections with substations and industrial plants.

Dispatchers also anticipate power needs, such as those caused by changes in the weather. They call control room operators to start or stop boilers and generators, in order to bring production into balance with needs. Dispatchers handle emergencies such as transformer or transmission line failures and route current around affected areas. In substations, they also operate and monitor equipment that increases or decreases voltage, and they operate switchboard levers to control the flow of electricity in and out of the substations.

Work environment. Operators, distributors, and dispatchers who work in control rooms generally sit or stand at a control station. This work is not physically strenuous, but it does require constant attention. Operators who work outside the control room may be exposed to danger from electric shock, falls, and burns.

Nuclear power plant operators are subject to random drug and alcohol tests, as are most workers at such plants. Additionally, they have to pass a medical examination every two years and may be exposed to small amounts of ionizing radiation as part of their jobs.

Because electricity is provided around the clock, operators, distributors, and dispatchers usually work one of three 8-hour shifts or one of two 12-hour shifts on a rotating basis. Shift assignments may change periodically, so that all operators share less desirable shifts. Work on rotating shifts can be stressful and fatiguing because of the constant change in living and sleeping patterns.

Related Occupations

Sources: Career Guide to Industries (CGI), Occupational Information Network (O*Net), Occupation Outlook Handbook (OOH)

Median annual earnings of power plant operators were $55,000 in May 2006. The middle 50 percent earned between $45,110 and $65,460. The lowest 10 percent earned less than $35,590, and the highest 10 percent earned more than $75,240.

Median annual earnings of nuclear power reactor operators were $69,370 in May 2006. The middle 50 percent earned between $61,590 and $78,150. The lowest 10 percent earned less than $54,180, and the highest 10 percent earned more than $92,240.

Median annual earnings of power distributors and dispatchers were $62,590 in May 2006. The middle 50 percent earned between $52,510 and $73,920. The lowest 10 percent earned less than $42,370, and the highest 10 percent earned more than $85,740.

For the latest wage information:

The above wage data are from the Occupational Employment Statistics (OES) survey program, unless otherwise noted. For the latest National, State, and local earnings data, visit the following pages:

  • Nuclear power reactor operators
  • Power distributors and dispatchers
  • Power plant operators
  • Job Outlook

    Employment of power plant operators, distributors, and dispatchers is projected to experience little or no employment change, but job opportunities are expected to be very good due to the large number of retiring workers who must be replaced, increased demand for energy, and recent legislation which paves the way for a number of new plants.

    Employment change. Between 2006 and 2016, employment of power plant operators, distributors, and dispatchers is projected to experience little or no employment change, growing by about 2 percent. Electric utilities are expected to build new power plants in response to the Energy Policy Act of 2005, which provides a number of subsidies. Growth will be tempered by a continued emphasis on cost reduction and automation. Although new power plants will require fewer workers than their older counterparts, the machinery in the new plants will be more technologically complex and environmental regulations will require much closer attention to emissions, so workers will be required to have higher skill levels.

    Job prospects. Job opportunities are expected to be very good for people who are interested in becoming power plant operators, distributors, and dispatchers. During the 1990s, the emphasis on cost cutting among utilities led to hiring freezes and the laying off of younger workers. The result is an aging workforce, half of which is expected to retire within the next 10 years. Utilities have responded by setting up new education programs at community colleges and high schools throughout the country. Prospects should be especially good for people with computer skills and a basic understanding of science and mathematics.


    Power plant operators, distributors, and dispatchers held about 47,000 jobs in 2006, of which 3,800 were nuclear power plant operators, 8,600 were power distributors and dispatchers, and 35,000 were other power plant operators. Jobs were located throughout the country. About 70 percent of jobs were in electric power generation, transmission, and distribution. About 16 percent worked in government, mainly in local government. Others worked for manufacturing establishments that produced electricity for their own use.

    • Mathematics — Knowledge of arithmetic, algebra, geometry, calculus, statistics, and their applications.
    • Engineering and Technology — Knowledge of the practical application of engineering science and technology. This includes applying principles, techniques, procedures, and equipment to the design and production of various goods and services.
    • Sales and Marketing — Knowledge of principles and methods for showing, promoting, and selling products or services. This includes marketing strategy and tactics, product demonstration, sales techniques, and sales control systems.
    • Medicine and Dentistry — Knowledge of the information and techniques needed to diagnose and treat human injuries, diseases, and deformities. This includes symptoms, treatment alternatives, drug properties and interactions, and preventive health-care measures.
    • Physics — Knowledge and prediction of physical principles, laws, their interrelationships, and applications to understanding fluid, material, and atmospheric dynamics, and mechanical, electrical, atomic and sub- atomic structures and processes.
    • Equipment Maintenance — Performing routine maintenance on equipment and determining when and what kind of maintenance is needed.
    • Coordination — Adjusting actions in relation to others' actions.
    • Active Learning — Understanding the implications of new information for both current and future problem-solving and decision-making.
    • Writing — Communicating effectively in writing as appropriate for the needs of the audience.
    • Troubleshooting — Determining causes of operating errors and deciding what to do about it.
    • Near Vision — The ability to see details at close range (within a few feet of the observer).
    • Stamina — The ability to exert yourself physically over long periods of time without getting winded or out of breath.
    • Explosive Strength — The ability to use short bursts of muscle force to propel oneself (as in jumping or sprinting), or to throw an object.
    • Oral Comprehension — The ability to listen to and understand information and ideas presented through spoken words and sentences.
    • Hearing Sensitivity — The ability to detect or tell the differences between sounds that vary in pitch and loudness.
    • Core — Collect oil, water, and electrolyte samples for laboratory analysis.
    • Core — Adjust controls to generate specified electrical power, or to regulate the flow of power between generating stations and substations.
    • Core — Make adjustments or minor repairs, such as tightening leaking gland and pipe joints; report any needs for major repairs.
    • Core — Operate or control power generating equipment, including boilers, turbines, generators, and reactors, using control boards or semi-automatic equipment.
    • Supplemental — Control generator output to match the phase, frequency, and voltage of electricity supplied to panels.
    • Monitoring and Controlling Resources — Monitoring and controlling resources and overseeing the spending of money.
    • Guiding, Directing, and Motivating Subordinates — Providing guidance and direction to subordinates, including setting performance standards and monitoring performance.
    • Assisting and Caring for Others — Providing personal assistance, medical attention, emotional support, or other personal care to others such as coworkers, customers, or patients.
    • Repairing and Maintaining Electronic Equipment — Servicing, repairing, calibrating, regulating, fine-tuning, or testing machines, devices, and equipment that operate primarily on the basis of electrical or electronic (not mechanical) principles.
    • Getting Information — Observing, receiving, and otherwise obtaining information from all relevant sources.

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