Capacitors’ Panels for Electrical Networks



Improving power factor for electrical loads, MV and LV networks, and design capacitor panels required for installations.

What you will learn

The concept of power factor and its impact on electricity networks

The influence of the power factor on induction motors and how to improve it

The influence of the power factor on the electrical transformers and how to improve it

Designing the necessary capacitor banks for each component of the electrical networks

Method of installing power capacitors

Advantages of improving power factor in electrical systems

Description

This course focuses on the analytical and design aspects of improving the power factor in all electricity networks and how to apply practical examples to give you the skill side in your design. Through hands-on experience in testing capacitor plates, I provide you with a desalination plant that I have tested and identified malfunctions.

In addition to the design of capacitor plates that need to be placed on electrical distribution transformers and network elements that operate at a voltage of 22 / 0.4 kV and the extent to which the technical losses are reduced by the power factor.

This course focuses on the analytical and design aspects of improving the power factor in all electricity networks and how to apply practical examples to give you the skill side in your design. Through hands-on experience in testing capacitor plates, I provide you with a desalination plant that I have tested and identified malfunctions.

In addition to the design of capacitor plates that need to be placed on electrical distribution transformers and network elements that operate at a voltage of 22 / 0.4 kV and the extent to which the technical losses are reduced by the power factor.


This course focuses on the analytical and design aspects of improving the power factor in all electricity networks and how to apply practical examples to give you the skill side in your design. Through hands-on experience in testing capacitor plates, I provide you with a desalination plant that I have tested and identified malfunctions.

In addition to the design of capacitor plates that need to be placed on electrical distribution transformers and network elements that operate at a voltage of 22 / 0.4 kV and the extent to which the technical losses are reduced by the power factor.

This course focuses on the analytical and design aspects of improving the power factor in all electricity networks and how to apply practical examples to give you the skill side in your design. Through hands-on experience in testing capacitor plates, I provide you with a desalination plant that I have tested and identified malfunctions.


In addition to the design of capacitor plates that need to be placed on electrical distribution transformers and network elements that operate at a voltage of 22 / 0.4 kV and the extent to which the technical losses are reduced by the power factor.

English
language

Content

Introduction

Introduction to capacitors’ panels for electrical networks

Power factor and Capacitor Banks Design for Electrical Networks

The concept of power factor and its effect on different electrical loads
Advantages of improving power factor in electrical systems
Study the effect of power factor on household loads in summer and winter seasons
A practical example of a factory requiring compensating capacitors

Power Factor and Design of Capacitor Banks for Induction Motors

How to improve the power factor in induction motors
A practical example of an electric motor requiring compensating capacitors

Power Factor and Design of Capacitor Banks for Electrical Transformers

How to improve the power factor at power and distribution transformer
A practical example of a 630 kVA distribution transformer requires capacitors
Study the effect of power factor of low voltage network feeding 50 subscribers

Dealing with Capacitor Panels and Checking in Installations

Selection of low and medium voltage capacitors
Where to install power capacitors
Testing broken down capacitor’s panel for 3-phase (400V) desalination plant

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