Uninterruptible Power Systems (UPS’s), Industrial Batteries, Variable Frequency Drives, And Motors (1.2 CEUs)
- Basic Design
- Specification
- Selection Criteria
- Sizing Calculations
- Enclosures and Sealing Arrangements
- Codes and Standards
- Common Operational Problems
- All Diagnostics, Troubleshooting, Testing, and Maintenance
- Engineers of all disciplines
- Managers
- Technicians
- Maintenance personnel
- Other technical individuals (this seminar is suitable for individuals who do not have an electrical background)
Learning Outcome
- Equipment Operation: Gain a thorough understanding of the operating characteristics of uninterruptible power systems (UPS’s), inverters, rectifiers, variable frequency drives (VFD’s), and industrial batteries
- Equipment Diagnostics and Inspection: Learn in detail all the diagnostic techniques and inspections required of critical components of uninterruptible power systems (UPS’s), inverters, rectifiers, variable frequency drives (VFD’s), and industrial batteries
- Equipment Testing: Understand thoroughly all the tests required for the various types of uninterruptible power systems (UPS’s), inverters, rectifiers, variable frequency drives (VFD’s), and industrial batteries
- Equipment Maintenance and Troubleshooting: Determine all the maintenance and troubleshooting activities required to minimize the downtime and operating cost of uninterruptible power systems (UPS’s), inverters, rectifiers, variable frequency drives (VFD’s), and industrial batteries
- Equipment Repair and Refurbishment: Gain a detailed understanding of the various methods used to repair and refurbish uninterruptible power systems (UPS’s), inverters, rectifiers, variable frequency drives (VFD’s), and industrial batteries
- Efficiency, Reliability, and Longevity: Learn the various methods used to maximize the efficiency, reliability, and longevity of uninterruptible power systems (UPS’s), inverters, rectifiers, variable frequency drives (VFD’s), and industrial batteries
- Equipment Sizing: Gain a detailed understanding of all the calculations and sizing techniques used for uninterruptible power systems (UPS’s), inverters, rectifiers, variable frequency drives (VFD’s), and industrial batteries
- Design Features: Understand all the design features that improve the efficiency and reliability of uninterruptible power systems (UPS’s), inverters, rectifiers, variable frequency drives (VFD’s), and industrial batteries
- Equipment Selection: Learn how to select uninterruptible power systems (UPS’s), inverters, rectifiers, variable frequency drives (VFD’s), and industrial batteries by using the performance characteristics and selection criteria that you will learn in this seminar
- Equipment Enclosures and Sealing Methods: Learn about the various types of enclosures and sealing arrangements used for uninterruptible power systems (UPS’s), inverters, rectifiers, variable frequency drives (VFD’s), and industrial batteries
- Equipment Commissioning: Understand all the commissioning requirements for uninterruptible power systems (UPS’s), inverters, rectifiers, variable frequency drives (VFD’s), and industrial batteries
- Equipment Codes and Standards: Learn all the codes and standards applicable for uninterruptible power systems (UPS’s), inverters, rectifiers, variable frequency drives (VFD’s), and industrial batteries
- Equipment Causes and Modes of Failure: Understand the causes and modes of failure of uninterruptible power systems (UPS’s), inverters, rectifiers, variable frequency drives (VFD’s), and industrial batteries
- System Design: Learn all the requirements for designing different types of uninterruptible power systems (UPS’s), inverters, rectifiers, variable frequency drives (VFD’s), and industrial batteries
1. “ELECTRICAL EQUIPMENT HANDBOOK” published by McGraw-Hill in 2003 (600 pages)
Philip Kiameh
- Power Generation Handbook: Gas Turbines, Steam Power Plants, Co-generation, and Combined Cycles, second edition, (800 pages), McGraw-Hill, New York, October 2011.
- Electrical Equipment Handbook (600 pages), McGraw-Hill, New York, March 2003.
- Power Plant Equipment Operation and Maintenance Guide (800 pages), McGraw-Hill, New York, January 2012.
- Industrial Instrumentation and Modern Control Systems (400 pages), Custom Publishing, University of Toronto, University of Toronto Custom Publishing (1999).
- Industrial Equipment (600 pages), Custom Publishing, University of Toronto, University of Toronto, University of Toronto Custom Publishing (1999).
- The first "Excellence in Teaching" award offered by the Professional Development Center at University of Toronto (May, 1996).
- The "Excellence in Teaching Award" in April 2007 offered by TUV Akademie (TUV Akademie is one of the largest Professional Development centre in world, it is based in Germany and the United Arab Emirates, and provides engineering training to engineers and managers across Europe and the Middle East).
- Awarded graduation “With Distinction” from Dalhousie University when completed Bachelor of Engineering degree (1983).
- Entrance Scholarship to University of Ottawa (1984).
- Natural Science and Engineering Research Counsel (NSERC) scholarship towards graduate studies – Master of Applied Science in Engineering (1984 – 1985).
Power Electronics, Rectifiers and Pulse-Width Modulation Inverters, Variable Frequency Drives (VFD’s)
- Inductors, capacitors, alternating current, Faraday’s law, magnetic field, three-phase system
- Power electronics components, Insulated Gate Bipolar Transistor (IGBT), basic rectifier circuits, filtering rectifier output, pulse circuits, inverters, pulse-width modulated (PWM) inverters
- Variable Frequency Drives (VFD’s), basic principles of AC variable Frequency (speed) drives (VSD’s), inverters, parts of an inverter, pulse-width modulated inverters, input power converter (rectifier), DC link energy, output IGBT inverter, input sources for regeneration or dynamic slowdown, dynamic breaking, regeneration, PWM-2 considerations
- Transients, harmonics power factor and failures, thyristor failures and testing, AC drive application issues, AC power factor, AC input power changes with AC input voltage, IGBT switching transients, insulation voltage stress, motor winding voltage distribution, radiated electromagnetic interferences (EMI), cable terminating (matching) impedance, inverter output filter
- Cabling details for AC drives, motor, cable, and power system grounding, motor bearing currents, motor shaft grounding brush, reduce the stator to rotor capacitance value, use conductive grease in motor bearings, motor cable wiring practices
- Summary of application rules for AC drives, selection criteria of VSD’s, variable process speed, compressors and pumps, motor starting
- Regeneration, dynamometer, paper machine winder, dynamic breaking, maintenance, common failure modes, motor application guidelines
Uninterruptible Power Systems (UPS’s), Maintenance of Industrial Batteries
- UPS operation, mission time, standards, voltage regulation, harmonic distortion, soft-start, overload rating, advanced UPS design, output contactor, battery protection, efficiency, power factor derating, environmental conditions
- Input power converter (rectifier), inverter, static bypass, display and controls, battery disconnect breaker, battery system, maintenance bypass cabinet (MBC)
- Intersystem synchronization, parallel operation, unattended shutdown, remote UPS monitoring, software compatibility, factory inspection, testing of UPS, steady-state performance tests, dynamic performance tests, isolation tests, reliability tests
- Commissioning of UPS, maintenance contracts, UPS maintenance, battery maintenance, UPS sizing, battery sizing, battery selection, space vector modulation technology, electromagnetic and radio frequency interference
- Discharge voltage characteristics, battery life, lead-acid batteries, installation and operation, placing the battery in service, charging the battery
- Modified constant-voltage method, taper method, two-rate method, constant-current method, maintenance, prevention of over-discharging, determination of battery condition, troubleshooting, repairs and maintenance of batteries
- Power station electrical systems and design requirements, safety requirements, shutdown and power trip, power plant outages and faults, UPS systems, DC systems
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