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Electrical
Substation
2
 What is electric substation??
 Why need electric substation?
Introduction
3
 Substation is a very important part in electrical power
system.
 Substation is the part of a power system in which the
voltage is transformed from high to low or low to high for
transmission, distribution, transformation and switching..etc.
 Substation which connected with other substations through
power transmission lines called Grid substation.
Introduction
4
 Substation has different voltage levels, elements, and
facilities.
 500kV / 230kV substation
 230kV / 115 kV substation
 115kV / 22kV substation
 22kV / 0.4kV substation
Introduction
5
Introduction
6
 Mostly substation is divided into two main sections.
1. Control panel section
 A room which contains control panels and protection
system.
2. Switch yard section
 It is outside section of control room.
Section division
7
1. Control panel section
 It is indoor section which contains two main parts.
1) Control panel parts which related to controlling of instruments,
feeder power flow, power flow in substation., etc
2) Relay protection panels is the protection system in whole
substation : relay panel, bus bar, line, transformer protection
panel…etc.
Section division
8
2. Switch yard section
 It is the field of outdoor part which contains operation and
control elements such as:
 Power transformer
 Bus bar
 CT, CVT, CB, DS, Insulator,
 Incoming and outgoing line…etc
Section division
9
Diagram
10
Main elements
11
 Here are the main criteria for consideration for the construction.
 It should locate at proper site
 It should provide safe and reliable arrangement
 Good design and construction
 It should be easily operated & maintained
 It should involve minimum capital cost
Construction requirement
12
 In term of insulation, substation is classified into two types.
1. Air insulated substation (AIS)
2. Gas insulated substation (GIS)
 In case substation used the combination of AIS and GIS
technologies called “Hybrid Substation”.
Classification
13
 Air Insulated Substation (AIS)
 Widely used in the world nowadays
 Use air as the insulation between conductor to conductor and conductor
to ground
 Air insolation is simple and cheap
 Mostly used in areas where space, weather conditions, and
environmental concerns are not an issue such as rural areas, and
favorable offsite terrain.
Classification
14
 Air Insulated Substation (AIS)
 Mostly it is outdoor substation
 Indoor AIS version is only used in highly polluted areas, and saline
conditions, as the air quality is compromised
Classification
15
 Air Insulated Substation (AIS)
 Advantage
 The primary choice for areas with extensive space
 With quality design, the system is viable due to the low construction
costs and cost of switchgear
 Less construction time, thereby more suited for expedited installations
 Easy maintenance as all the equipment is within view. It is easy to
notice and attend to faults
Classification
16
 Air Insulated Substation (AIS)
 Disadvantage
 More space is required
 Vulnerable to faults since the equipment are exposed to the external
elements such as human intrusion, pollution, deposition of saline
particles, lightning strikes and extreme weather conditions
 More maintenance requirements, thus leading to high costs
 The poor dielectric properties of air, as well as secondary factors such
as humidity, pollutants, moisture.
Classification
17
 Gas Insulated Substation (GIS)
 Use gas as the insolation
 Contain the same compartments and components as the normal (AIS)
setups
 All components are enclosed in a grounded metal enclosure, then the
whole system housed in a chamber full of gas.
 Gas insulated substations (GIS) primarily use sulphur hexafluoride gas
as the primary insulator.
Classification
18
 Gas Insulated Substation (GIS)
 SF6 is non-toxic, maintains atomic and molecular properties even at
high voltages, high cooling properties, and superior arc quenching
properties.
Classification
19
 Gas Insulated Substation (GIS)
 SF6 has superior dielectric properties compared to other gases; thereby
provide favorable insulation for the phase to phase and phase to ground
moderation
 It is more complex and expensive than air insulation. In terms of safety
and effectiveness
 Very applicable for indoor and underground substation.
Classification
20
 Gas Insulated Substation (GIS)
Classification
21
 Gas Insulated Substation (GIS)
 Advantage
 The earthed metal enclosure makes for a safe working environment for
the attending personnel.
 Low maintenance requirements due to expedient design and protection
against external elements.
 Quick assembly due to extensive pre-assembly
Classification
22
 Gas Insulated Substation (GIS)
 Advantage
 SF6 neither ages nor depletes. There is no need to top up the gas
levels throughout the equipment lifetime (approx 40 years).
Classification
23
 SF6 insulation properties
Classification
24
 SF6 insulation properties
Classification
25
 Gas Insulated Substation (GIS)
 Disadvantage
 High installation costs compared to AIS systems.
 Procurement and supply of SF6 gas can be a problems especially in
rough terrain and off site locations. This further increases the costs.
 High level of maintenance is required. This requires highly skilled
personnel
Classification
26
 Gas Insulated Substation (GIS)
 Disadvantage
 If has internal fault, difficult to find and repair.
 If has leakage, it is so harmful to environment due to its huge
contribution in global warming compared to CO2.
 Its potential is 22 200 time greater than CO2.
 It is a very expensive product.
Classification
27
 Hybrid Substation
 Reduced cost of GIS due to air insulted bus bar. Air insulated bus bar is
relatively inexpensive.
 Reduce spaced required of AIS.
 Most reliable and cost-effective solution for new installations,
expansions or replacement of existing substations.
Classification
28
 Hybrid Substation
Classification
29
Classification
-Transformer substation
- Switching substation
- Power factor correction
substation
- Frequency changer substation
- converting substation
- Industrial substation
- Indoor substation
- Outdoor substation
- Underground substation
- Pole-mounted substation
Substation classification
Requirement based Constructional based
30
 Transformer substation
 Changing the voltage level of electric supply
 Receive power of some voltage and deliver it to other voltage level.
 Most of the substation
are like ‘transformer substation’.
Requirement based
31
 Switching substation
 Do not change the voltage level
 Incoming voltage = outgoing voltage
Requirement based
32
 Power factor substation
 This substation locate at receiving end of transmission line
 Commonly ‘synchronous condenser’ is used for power factor
 Substation improve the system power factor
Requirement based
33
 Converting substation
 Converting substation converting to AC power to DC power.
 Use for traction system (railways), welding, electroplating..
Requirement based
34
 Frequency changer substation
 Those substation can change the supply frequency
 Frequency change may require for industrial utilities
 An electronic or electromechanical
device that converts alternating current (AC)
of one frequency to alternating current
of another frequency.
Requirement based
35
 Industrial substation
 Supply power to the individual industrial consumers or commercial
buildings.
Requirement based
36
 Indoor substation
 Inside building or where the space constraints.
 Mostly is GIS
 Applicable in high building/ urban areas to reduce the noise from the
transformers, for reasons of appearance, or to protect switchgear from
extreme climate or pollution conditions.
Constructional based
37
 Indoor substation
 Voltage up to 11kV and can be increased up to 66kV
Constructional based
38
 Outdoor substation
 Very widely used in power system nowadays
 For all voltage levels between 55 KV to 765 KV.
 Transformers and other heavy and large equipment are installed in
outer space and only control equipment are installed in the building
 Less expensive
 easy to construct and maintenance
Constructional based
39
Comparison
Outdoor Indoor
More space required Less space required
Less time required for maintenance More time required for maintenance
Easy future extension Difficult future extension
Easier fault location because of
equipment being in full view.
Difficult fault location because of
equipment not being in full view.
Low capital cost High capital cost
Difficult operation Easier operation
Faults detection time is less. Fault detection time is more.
40
 Underground substation
 Mostly in most populated areas
 an effective solution for saving space in city areas
 less impact on the environment.
Constructional based
41
 Pole-mounted substation
 Outdoor type substation
 For supporting small rating distribution transformer up to 250KVA
 Mounted on the supporting structures of high tension distribution line
 Basically there are two pole mounting structures used in Power system
1. Single pole mounting
2. H-pole mounting
Constructional based
42
 Single pole substation
 Transformer is mounted on single
pole with the help of angles and
other metallic structures collectively
called transformer platform.
Constructional based
43
 Single pole substation
Constructional based
44
 H pole substation
 Used for relatively high rating
transformers
 Two poles are installed so that to
provide a base for the transformer
 This arrangement is used because
the weight of the transformer is
heavy.
Constructional based
45
 Battery bank
 In Substations we use battery bank to provide an uninterrupted &
reliable power supply to control the switch gears & Monitor the status of
Feeders in case of power failure.
Other facilities
46
 Capacitor bank
 Normally capacitor bank is used in distribution Substation to control the
level of the voltage supplied to the consumer by reducing or eliminating
the voltage drop in the system.
Other facilities
47
 HVAC System
 Substations require special attention to ventilation in order to dissipate
heat losses from electrical equipment.
 Forced ventilation should be used where natural ventilation is not
practicable ,means fan system must be installed.
Other facilities
48
 Fire Fighting System
 Substations contain components and materials that against a fire risk.
 For preventing fire, fire systems are installed in substations on the
sensitive area which give signal or alarm in case of fire such as fire
alarm, water sprinkler, smoke detector heat detector.
 Not all possible fire protection measures are necessary for every
substation
Other facilities
49
 Fire Fighting System
Other facilities
50
 Gate
 The substation building are surrounded by the fence or concrete wall to
prevent the unauthorized person or animals to get in.
Other facilities

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Electrical Grid Substation

  • 2. 2  What is electric substation??  Why need electric substation? Introduction
  • 3. 3  Substation is a very important part in electrical power system.  Substation is the part of a power system in which the voltage is transformed from high to low or low to high for transmission, distribution, transformation and switching..etc.  Substation which connected with other substations through power transmission lines called Grid substation. Introduction
  • 4. 4  Substation has different voltage levels, elements, and facilities.  500kV / 230kV substation  230kV / 115 kV substation  115kV / 22kV substation  22kV / 0.4kV substation Introduction
  • 6. 6  Mostly substation is divided into two main sections. 1. Control panel section  A room which contains control panels and protection system. 2. Switch yard section  It is outside section of control room. Section division
  • 7. 7 1. Control panel section  It is indoor section which contains two main parts. 1) Control panel parts which related to controlling of instruments, feeder power flow, power flow in substation., etc 2) Relay protection panels is the protection system in whole substation : relay panel, bus bar, line, transformer protection panel…etc. Section division
  • 8. 8 2. Switch yard section  It is the field of outdoor part which contains operation and control elements such as:  Power transformer  Bus bar  CT, CVT, CB, DS, Insulator,  Incoming and outgoing line…etc Section division
  • 11. 11  Here are the main criteria for consideration for the construction.  It should locate at proper site  It should provide safe and reliable arrangement  Good design and construction  It should be easily operated & maintained  It should involve minimum capital cost Construction requirement
  • 12. 12  In term of insulation, substation is classified into two types. 1. Air insulated substation (AIS) 2. Gas insulated substation (GIS)  In case substation used the combination of AIS and GIS technologies called “Hybrid Substation”. Classification
  • 13. 13  Air Insulated Substation (AIS)  Widely used in the world nowadays  Use air as the insulation between conductor to conductor and conductor to ground  Air insolation is simple and cheap  Mostly used in areas where space, weather conditions, and environmental concerns are not an issue such as rural areas, and favorable offsite terrain. Classification
  • 14. 14  Air Insulated Substation (AIS)  Mostly it is outdoor substation  Indoor AIS version is only used in highly polluted areas, and saline conditions, as the air quality is compromised Classification
  • 15. 15  Air Insulated Substation (AIS)  Advantage  The primary choice for areas with extensive space  With quality design, the system is viable due to the low construction costs and cost of switchgear  Less construction time, thereby more suited for expedited installations  Easy maintenance as all the equipment is within view. It is easy to notice and attend to faults Classification
  • 16. 16  Air Insulated Substation (AIS)  Disadvantage  More space is required  Vulnerable to faults since the equipment are exposed to the external elements such as human intrusion, pollution, deposition of saline particles, lightning strikes and extreme weather conditions  More maintenance requirements, thus leading to high costs  The poor dielectric properties of air, as well as secondary factors such as humidity, pollutants, moisture. Classification
  • 17. 17  Gas Insulated Substation (GIS)  Use gas as the insolation  Contain the same compartments and components as the normal (AIS) setups  All components are enclosed in a grounded metal enclosure, then the whole system housed in a chamber full of gas.  Gas insulated substations (GIS) primarily use sulphur hexafluoride gas as the primary insulator. Classification
  • 18. 18  Gas Insulated Substation (GIS)  SF6 is non-toxic, maintains atomic and molecular properties even at high voltages, high cooling properties, and superior arc quenching properties. Classification
  • 19. 19  Gas Insulated Substation (GIS)  SF6 has superior dielectric properties compared to other gases; thereby provide favorable insulation for the phase to phase and phase to ground moderation  It is more complex and expensive than air insulation. In terms of safety and effectiveness  Very applicable for indoor and underground substation. Classification
  • 20. 20  Gas Insulated Substation (GIS) Classification
  • 21. 21  Gas Insulated Substation (GIS)  Advantage  The earthed metal enclosure makes for a safe working environment for the attending personnel.  Low maintenance requirements due to expedient design and protection against external elements.  Quick assembly due to extensive pre-assembly Classification
  • 22. 22  Gas Insulated Substation (GIS)  Advantage  SF6 neither ages nor depletes. There is no need to top up the gas levels throughout the equipment lifetime (approx 40 years). Classification
  • 23. 23  SF6 insulation properties Classification
  • 24. 24  SF6 insulation properties Classification
  • 25. 25  Gas Insulated Substation (GIS)  Disadvantage  High installation costs compared to AIS systems.  Procurement and supply of SF6 gas can be a problems especially in rough terrain and off site locations. This further increases the costs.  High level of maintenance is required. This requires highly skilled personnel Classification
  • 26. 26  Gas Insulated Substation (GIS)  Disadvantage  If has internal fault, difficult to find and repair.  If has leakage, it is so harmful to environment due to its huge contribution in global warming compared to CO2.  Its potential is 22 200 time greater than CO2.  It is a very expensive product. Classification
  • 27. 27  Hybrid Substation  Reduced cost of GIS due to air insulted bus bar. Air insulated bus bar is relatively inexpensive.  Reduce spaced required of AIS.  Most reliable and cost-effective solution for new installations, expansions or replacement of existing substations. Classification
  • 29. 29 Classification -Transformer substation - Switching substation - Power factor correction substation - Frequency changer substation - converting substation - Industrial substation - Indoor substation - Outdoor substation - Underground substation - Pole-mounted substation Substation classification Requirement based Constructional based
  • 30. 30  Transformer substation  Changing the voltage level of electric supply  Receive power of some voltage and deliver it to other voltage level.  Most of the substation are like ‘transformer substation’. Requirement based
  • 31. 31  Switching substation  Do not change the voltage level  Incoming voltage = outgoing voltage Requirement based
  • 32. 32  Power factor substation  This substation locate at receiving end of transmission line  Commonly ‘synchronous condenser’ is used for power factor  Substation improve the system power factor Requirement based
  • 33. 33  Converting substation  Converting substation converting to AC power to DC power.  Use for traction system (railways), welding, electroplating.. Requirement based
  • 34. 34  Frequency changer substation  Those substation can change the supply frequency  Frequency change may require for industrial utilities  An electronic or electromechanical device that converts alternating current (AC) of one frequency to alternating current of another frequency. Requirement based
  • 35. 35  Industrial substation  Supply power to the individual industrial consumers or commercial buildings. Requirement based
  • 36. 36  Indoor substation  Inside building or where the space constraints.  Mostly is GIS  Applicable in high building/ urban areas to reduce the noise from the transformers, for reasons of appearance, or to protect switchgear from extreme climate or pollution conditions. Constructional based
  • 37. 37  Indoor substation  Voltage up to 11kV and can be increased up to 66kV Constructional based
  • 38. 38  Outdoor substation  Very widely used in power system nowadays  For all voltage levels between 55 KV to 765 KV.  Transformers and other heavy and large equipment are installed in outer space and only control equipment are installed in the building  Less expensive  easy to construct and maintenance Constructional based
  • 39. 39 Comparison Outdoor Indoor More space required Less space required Less time required for maintenance More time required for maintenance Easy future extension Difficult future extension Easier fault location because of equipment being in full view. Difficult fault location because of equipment not being in full view. Low capital cost High capital cost Difficult operation Easier operation Faults detection time is less. Fault detection time is more.
  • 40. 40  Underground substation  Mostly in most populated areas  an effective solution for saving space in city areas  less impact on the environment. Constructional based
  • 41. 41  Pole-mounted substation  Outdoor type substation  For supporting small rating distribution transformer up to 250KVA  Mounted on the supporting structures of high tension distribution line  Basically there are two pole mounting structures used in Power system 1. Single pole mounting 2. H-pole mounting Constructional based
  • 42. 42  Single pole substation  Transformer is mounted on single pole with the help of angles and other metallic structures collectively called transformer platform. Constructional based
  • 43. 43  Single pole substation Constructional based
  • 44. 44  H pole substation  Used for relatively high rating transformers  Two poles are installed so that to provide a base for the transformer  This arrangement is used because the weight of the transformer is heavy. Constructional based
  • 45. 45  Battery bank  In Substations we use battery bank to provide an uninterrupted & reliable power supply to control the switch gears & Monitor the status of Feeders in case of power failure. Other facilities
  • 46. 46  Capacitor bank  Normally capacitor bank is used in distribution Substation to control the level of the voltage supplied to the consumer by reducing or eliminating the voltage drop in the system. Other facilities
  • 47. 47  HVAC System  Substations require special attention to ventilation in order to dissipate heat losses from electrical equipment.  Forced ventilation should be used where natural ventilation is not practicable ,means fan system must be installed. Other facilities
  • 48. 48  Fire Fighting System  Substations contain components and materials that against a fire risk.  For preventing fire, fire systems are installed in substations on the sensitive area which give signal or alarm in case of fire such as fire alarm, water sprinkler, smoke detector heat detector.  Not all possible fire protection measures are necessary for every substation Other facilities
  • 49. 49  Fire Fighting System Other facilities
  • 50. 50  Gate  The substation building are surrounded by the fence or concrete wall to prevent the unauthorized person or animals to get in. Other facilities