Course Code: EEC 1071
49 Course Visits
Industrial Power Distribution Systems Optimization
Course Sector:
Electrical Engineering
Course Dates and Locations
Choose a date and location to book your seat
No.
Date
Days
Location
Fees
Enrollment
01
08 - 12 Sep 2025
5 Days
Los Angeles , USA
$5,950
02
20 - 24 Oct 2025
5 Days
Dubai, UAE
$4,250
Introduction
Training course introducion / brief
Special Protection Systems (SPSs). 
Power system at distribution Optimization level should be planned and designed with consideration for ease of operation. Such considerations include, but are not limited to Optimization/ utilization of standard components, facilitate availability of spare parts, optimization of post contingency switching operations, reduction of operational risks and use of special protection systems (SPSs). Also, to achieve the required power supply reliability, power system Optimization / planning-particularly for medium-voltage system must consider not only the system configuration and earthing, etc.
 but also the arrangement of the stations, the choice of equipment and so on. The decisions taken contribute substantially to both the design reliability and the operational reliability, and also influence each other. The course will discuss how future electrical loads can be integrated in the existing power utilities networks, industrial as well as oil and gas plants to meet high quality of supply. The quality of electrical power must guarantee the continuity of supply, fixed frequency, non-violation of voltage limits, cleanness of supply voltage signal, non-harmful motor starting currents and smooth operation of power electronic devices.
Course Objectives
At the end of the training course, participants will be able to
  •  Distribution System Network configuration
  •  Explain standards and regulations as well as electric power .
  •  Normal and emergency power sources for industrial loads
  •  Protection devices selection and calculations
  •  Distribution systems related studies with target Optimization
  •  Optimization operation of power distribution system
Course Audience
Who is this course for, and can benefit the most
  •  Electrical Engineers
  •  Electrical Supervisors
  •  Maintenance Technicians
  •  Managers in-charge of Instrument Installations
  •  Project Engineers
Course Outline
The course aims and learning outcomes
Moduel  1
  •  PRE-TEST
  •  Power System Component and configuration
  •  Power distribution system standard voltage according to IEEE/IEC
  •  Electrical Distribution System Network Components
  •  Transformers
  •  Cables & OHTL
  •  Circuit breakers
  •  Switchboards
  •  Types of distribution system and its Optimization
  •  Radial Distribution system
  •  Ring Distribution system
  •  Parallel feeder Distribution system
  •  Advantage and dis-advantage of each type
  •  Operation characteristics of radial Distribution power system
  •  Operation characteristics of parallel feeder radial Distribution power system
  •  Operation characteristics of ring Distribution power system
  •  Factors effect in Optimization Distribution system
  •  Voltage droop and Distribution system (Optimization)
  •  Short circuit level and Distribution system
  •  Meaning of industrial loads
  •  Classifications of loads
Module  2
  •  Power transformers systems
  •  Optimization of Distribution transformers operation
  •  Distribution transformers component
  •  Magnet wires & bars of transformer
  •  Coil / Winding Connections
  •  Transformer Core-type
  •  Transformer Shell-type
  •  Transformer Core lamination
  •  Bushing
  •  Oils
  •  Gauges (Level, Temp., Pressure,…..)
  •  Overloading of transformers
  •  Transformer types
  •  Self-air cooled Transformer
  •  Forced Air Cooled Transformer
  •  Oil-Immersed Self cooled Transformer (ONAN)
  •  Oil-Immersed forced air cooled Transformer (ONAF)
  •  Oil-Immersed Forced water cooled forced Transformer (OFWF) Transformers maintenance and troubleshooting
  •  Distribution transformers protection
  •  Connection of transformer
  •  Delta
  •  Star
  •  Open Delta Configuration
Module  3
  •  Optimization of Power cables
  •  Low Voltage level power cables
  •  Medium Voltage level power cables
  •  Power cables testing
  •  Megger test
  •  High pot test
  •  Power cables splicing
  •  Cold shrank type
  •  Hot shrank type
  •  Testing of power cables
  •  Basic introduction of switchgear
  •  Distribution panels component
  •  Distribution panel rating selection
  •  Distribution panel operation (isolation- control & protection)
Module 4
  •  Optimization of Circuit breakers and fuses types & operation
  •  Circuit breaker types
  •  MCB Minture Circuit breaker
  •  MCCB Molded case circuit breaker
  •  Air Blast Circuit breaker
  •  Air Circuit breaker
  •  Vacuum Circuit breaker
  •  Oil Circuit breaker
  •  SF6 Circuit breaker
  •  Circuit breakers main component
  •  Close coil
  •  Trip coil
  •  Charge coils
  •  Motors applications for industrial loads
  •  Motors types and selection
  •  Motors controllers and drives
Module 5
  •  Power distribution quality and effect on Optimization
  •  Power distribution Quality Standards
  •  Power System distribution Quality
  •  Harmonics.
  •  Power Factor.
  •  Reactive power sources
  •  Effect of reactive power in power system
  •  Introduction of harmonics
  •  Source of harmonics
  •  Causes of harmonics
Module  6
  •  Dis-advantage of harmonics
  •  Power system distribution harmonics level
  •  Reducing Harmonics IEEE519-1992
  •  Measure Harmonics Values
  •  Reducing harmonics values
  •  Power distribution Design
  •  Use rectifier with more pulses
  •  Delta-Delta and Delta-Wye Transformers
  •  Isolation Transformers
  •  Line Reactors
  •  Harmonic Trap Filters
  •  Harmonic filter types
  •  Passive filter
  •  Active filter
  •  Power Factor meaning
  •  Effect of low power factor
  •  Disadvantages of Low Power Factor
  •  Leading and lagging power factor:
  •  Causes Low Power Factor
  •  Correct Power Factor
  •  Power Factor meaning
  •  Relation between loads and power factor
  •  Effect of low power factor on
  •  Generators
  •  Transformer
  •  Cables
  •  Electronics Devices
  •  Relation between VSD & ESP on Power factor values
  •  Disadvantages of Low Power Factor
  •  Leading and lagging power factor
  •  Causes Low Power Factor
  •  Relation between Harmonics and power factor
  •  Power Factor correction PFC
  •  Capacitors banks
  •  Synchronous Motors
  •  FACTs devices
Providers and Associations
Providing the best training services and benefits to our valued clients
Boost certificate of completion
BOOST's Professional Attendance Certificate “BPAC” is always given to the delegates after completing the training course, and depends on their attendance of the program at a rate of no less than 80%, besides their active participation and engagement during the program sessions.
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COURSE METHODOLOGY

Our Training programs are implemented by combining the participants' academic knowledge and practical practice (30% theoretical / 70% practical activities).

At The end of the training program, Participants are involved in practical workshop to show their skills in applying what they were trained for. A detailed report is submitted to each participant and the training department in the organization on the results of the participant's performance and the return on training. Our programs focus on exercises, case studies, and individual and group presentations.

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