SlideShare une entreprise Scribd logo
1  sur  23
LENDI INSTITUTE OF ENGINEERING AND TECHNOLOGY
Jonnada, Andhra Pradesh- 535005
Department of Electrical and Electronics Engineering
UNIT -V
STATIC AND DIGITAL RELAYS
Presented by,
Dr. Rohit Babu, Associate Professor
Syllabus
Department of Electrical and Electronics Engineering
∟Static relays
―Static relay components
―Static over current relays
―Static distance relay
―Micro processor based digital relays
Static relay components
Department of Electrical and Electronics Engineering
Static Relays
• Static relays contain electronic circuitry which may include transistors, ICs, diodes and other electronic
components.
• Static relays possess the advantages of having low burden on the CT and VT, fast operation, absence of
mechanical inertia and contact trouble, long life and less maintenance.
• Static relays have proved to be superior to electromechanical relays and they are being used for the protection
of important lines, power stations and sub-stations. Yet they have not completely replaced electromechanical
relays.
• Static relays are treated as an addition to the family of relays.
• Electromechanical relays continue to be in use because of their simplicity and low cost.
• Their maintenance can be done by less qualified personnel, whereas the maintenance and repair of static
relays requires personnel trained in solid state devices.
Static relay components
Department of Electrical and Electronics Engineering
Static relays: These are solid state relays and employ semiconductor diodes, transistors, thyristors, logic
gates, ICs, etc. The measuring circuit is a static circuit and there are no moving parts. In some static relays, a
slave relay which is a dc polarised relay is used as the tripping device.
Definition
Static relay components
Department of Electrical and Electronics Engineering
The component of the static relay is shown in the figure below.
Static Relay components
Department of Electrical and Electronics Engineering
1. The input of the current transformer is connected to the transmission line, and their output is given to
the rectifier.
2. The rectifier was rectifying the input signal and pass it to the relaying measuring unit.
3. The rectifying measuring unit has the comparators, level detector and the logic circuit. The output
signal from relaying unit obtains only when the signal reaches the threshold value. The output of the
relaying measuring unit acts as an input to the amplifier.
4. The amplifier amplifies the signal and gives the output to the output devices.
5. The output device activates the trip coil only when the relay operates. The output is obtained from the
output devices only when the measurand has the well-defined value. The output device is activated and
gives the tripping command to the trip circuit.
Static relay components
Department of Electrical and Electronics Engineering
6. The static relay only gives the response to the electrical signal. The other physical quantities like heat
temperature etc. is first converted into the analogue and digital electrical signal and then act as an
input for the relay.
Static relay components
Department of Electrical and Electronics Engineering
ADVANTAGES OF STATIC RELAYS OVER ELECTROMAGNETIC RELAYS
i. Low burden on CTs and VTs. The static relays consume less power and in most of the cases they draw
power from the auxiliary dc supply
ii. Fast response
iii. Long life
iv. High resistance to shock and vibration
v. Less maintenance due to the absence of moving parts and bearings
vi. Frequent operations cause no deterioration
vii. Quick resetting and absence of overshoot
viii. Compact size
ix. Greater sensitivity as amplification can be provided easily
x. Complex relaying characteristics can easily be obtained
xi. Logic circuits can be used for complex protective schemes
Static relay components
Department of Electrical and Electronics Engineering
1. The components used by the static relay are very sensitive to the electrostatic discharges. The
electrostatic discharges mean sudden flows of electrons between the charged objects. Thus special
maintenance is provided to the components so that it does not affect by the electrostatic
discharges.
2. The relay is easily affected by the high voltage surges. Thus, precaution should be taken for
avoiding the damages through voltage spikes.
3. The working of the relay depends on the electrical components.
4. The relay has less overloading capacity.
5. The static relay is more costly as compared to the electromagnetic relay.
6. The construction of the relay is easily affected by the surrounding interference.
LIMITATIONS OF STATIC RELAY
Static Overcurrent relay
Department of Electrical and Electronics Engineering
1. Static Instantaneous Overcurrent Relay
1. The current derived from the main CT is fed to the input transformer which gives a proportional output
voltage.
2. The input transformer has an air gap in the iron core to give linearity in the current/voltage relationship
up to the highest value of current expected, and is provided with tappings on its secondary winding to
obtain different current settings.
3. The output voltage of the transformer is rectified through a rectifier and then filtered at a single stage to
avoid undesirable time delay in filtering so as to ensure high speed of operation.
Static Overcurrent relay
Department of Electrical and Electronics Engineering
4. A fixed portion of the rectified and filtered voltage (through a potential divider) is compared against a preset
pick-up value by a level detector and if it exceeds the pick-up value, a signal through an amplifier is given to
the output device which issues the trip signal.
5. The output device may either be a static thyristor circuit or an electromagnetic slave relay.
Static Overcurrent relay
Department of Electrical and Electronics Engineering
2. Static Definite Time Overcurrent Relay
The operating time of a definite time overcurrent relay is constant, irrespective of the level of
the fault current.
Static Overcurrent relay
Department of Electrical and Electronics Engineering
1. The input current signal derived from the main CT is converted to a proportional voltage signal by
the input transformer and then rectified, filtered and compared with the preset threshold value of
the level detector (1).
2. If the voltage exceeds the preset threshold value, the level detector gives an output voltage, thereby
the charging of the capacitor C of the RC timing circuit starts.
3. As soon as the voltage across the capacitor exceeds the preset threshold value (VT) of level detector
(2), a signal through the amplifier is given to the output device which issues the trip signal.
4. Potentiometers P1 and P2 are used for current setting and time setting, respectively.
Static Overcurrent relay
Department of Electrical and Electronics Engineering
If VT is the threshold value of the level detector, the time TC required to reach this voltage depends
upon the charging time of the capacitor C of the RC timing circuit, given by,
where V is the voltage applied to the capacitor.
If V, R and C are constant, the charging time for a given value of VT will be constant.
The time TC can be varied by varying R-C combinations and VT.
Static Overcurrent relay
Department of Electrical and Electronics Engineering
3. Static Inverse-time Overcurrent Relay
The operating time of the inverse-time overcurrent relay decreases with increasing fault current.
Static Overcurrent relay
Department of Electrical and Electronics Engineering
1. The current signal is converted to a proportional voltage signal by the input transformer and
then rectified, filtered and compared with a reference voltage of the level detector (1) set by the
potentiometer P1.
2. Under normal conditions, i.e. when the input current is low, switch S1 is ON, short-circuiting the
capacitor C of the RC timing circuit and switch S2 is OFF.
3. As soon as the input voltage exceeds the preset reference voltage of the level detector (1), switch
S1 is switched OFF and switch S2 is switched ON and the charging of capacitor C of the timing
circuit starts from a voltage proportional to the current.
4. Switches S1 and S2 are made of static components.
5. When the voltage across the capacitor C of the timing circuit exceeds the reference voltage of the
level detector (2) as set by potentiometer P3, a signal is given to the output device through an
amplifier. Finally, the output device issues the trip signal.
Static Distance relay
Department of Electrical and Electronics Engineering
4. Static Directional Overcurrent Relay
1. The directional overcurrent relay incorporates a directional unit which responds to power flow in
a specified direction.
2. The directional relay senses the direction of power flow by means of a phase difference (f)
between voltage (V) and current (I).
3. When f exceeds a certain predetermined value and the current is above the pick-up value, the
directional overcurrent relay operates.
4. The directional relay is a double actuating quantity relay with one input as current I from CT and
the other input as voltage V from VT.
which can be used either as a directional relay or as a distance relay depending on the input
quantities being fed.
Static Distance relay
Department of Electrical and Electronics Engineering
1. The inputs V and I are applied to phase comparator.
2. A phase shifter is added in voltage input circuit before applying it to the phase comparator to
achieve the maximum output of the phase comparator under fault conditions.
3. The output of the phase comparator is given to the level detector and then to the output device
through an amplifier.
Static Distance relay
Department of Electrical and Electronics Engineering
4. If the output of the phase comparator exceeds the preset reference voltage of the level detector,
the output device issues the trip signal.
5. There are two main types of phase comparators used for the purpose.
6. One of these is the Hall effect types comparator which has been used in USSR, whereas all other
countries have preferred the rectifier bridge type of comparator due to its lower cost and the
higher outputs obtainable as compared to the Hall elements.
Microprocessor Based Relay
Department of Electrical and Electronics Engineering
Microprocessor relays provide many functions that were not available in electromechanical or solid-state
designs.
Relay logic is very important to understand the microprocessor-based relay.
The relay can be ON or OFF, that is, it has two stable states.
Microprocessor Based Relay
Department of Electrical and Electronics Engineering
1. Similarly, the output of a logic function is activated, that is, high or deactivated, that is, low.
2. The three basic logical functions are: AND, OR and NOT functions.
3. All of these functions can be achieved using transistors as well. It is called transistor-transistor
logic.
4. The output of the CT line is given to the input receiver block where the signal is processed.
5. Signal processing includes overvoltage protector, rectifier, smoothing filters, auxiliary CT, etc.,
depending on the requirements.
6. This signal is an analog signal. The A / D converter converts this into a digital signal that is accepted
by the microprocessor.
7. The microprocessor is a block of decision making.
8. The received digital signal is compared with the reference to generate the appropriate trigger signal.
Microprocessor Based Relay
Department of Electrical and Electronics Engineering
10. This is a digital signal that is converted back to analog to operate the trip coil.
11. This is achieved by the D / A converter.
12. The data logger captures the data and sends it to the microprocessor when there is a request
from the microprocessor.
13. The information can be displayed with a suitable display device when taking the signal from
the microprocessor.
14. The main advantage of this relay is that it is programmable.
15. The program can handle the online calculations and make the decision accordingly.
16. Another important advantage of the microprocessor-based relay is that a microprocessor unit
can perform the retransmission operation of several systems.
Microprocessor Based Relay
Department of Electrical and Electronics Engineering
Advantages of microprocesser based relay:
Thus various advantages of microprocessor based relay are:
1. Very efficient and reliable.
2. Highly accurate.
3. Very fast in operation.
4. Programmable in nature.
5. A unit can perform retransmission of several systems.
6. economical for large systems.
7. Useful for centrally coordinated backup protection.

Contenu connexe

Tendances

Loading Capability Limits of Transmission Lines
Loading Capability Limits of Transmission LinesLoading Capability Limits of Transmission Lines
Loading Capability Limits of Transmission LinesRaja Adapa
 
Protection of transmission lines(encrypted)
Protection of transmission lines(encrypted)Protection of transmission lines(encrypted)
Protection of transmission lines(encrypted)Rohini Haridas
 
POWER SYSTEM PROTECTION
POWER SYSTEM PROTECTION POWER SYSTEM PROTECTION
POWER SYSTEM PROTECTION moiz89
 
Protection against overvoltage
Protection against overvoltageProtection against overvoltage
Protection against overvoltagevishalgohel12195
 
Generator and Transformer Protection (PART 1)
Generator and Transformer Protection (PART 1)Generator and Transformer Protection (PART 1)
Generator and Transformer Protection (PART 1)Dr. Rohit Babu
 
Circuit breaker arc interruption.pptx
Circuit breaker arc interruption.pptxCircuit breaker arc interruption.pptx
Circuit breaker arc interruption.pptxAnshulShekhar3
 
Speed control of Three phase Induction motor using AC voltage regulator
Speed control of Three phase Induction motor using AC voltage regulatorSpeed control of Three phase Induction motor using AC voltage regulator
Speed control of Three phase Induction motor using AC voltage regulatorShivagee Raj
 
Skin effect, proximity effect, ferranti effect, corona discharge
Skin effect, proximity effect, ferranti effect, corona dischargeSkin effect, proximity effect, ferranti effect, corona discharge
Skin effect, proximity effect, ferranti effect, corona dischargeRoungpaSukhe
 
Alternator protection
Alternator protectionAlternator protection
Alternator protectionjawaharramaya
 
Unit 03 Protective relays
Unit  03 Protective relaysUnit  03 Protective relays
Unit 03 Protective relaysPremanandDesai
 
Measurement of hvac (High Voltage Engineering )
Measurement  of  hvac (High Voltage Engineering )Measurement  of  hvac (High Voltage Engineering )
Measurement of hvac (High Voltage Engineering )Abhishek Choksi
 
Relays and its types - complete guide
Relays and its types - complete guideRelays and its types - complete guide
Relays and its types - complete guideSlides Hub
 
automatic voltage regulator
automatic voltage regulator automatic voltage regulator
automatic voltage regulator Sumit Patel
 
Transient in Power system
Transient in Power systemTransient in Power system
Transient in Power systemPreet_patel
 
Firing angle control
Firing angle controlFiring angle control
Firing angle controljawaharramaya
 
Methods of Voltage Control
Methods of Voltage ControlMethods of Voltage Control
Methods of Voltage ControlYashvi Mehta
 

Tendances (20)

Loading Capability Limits of Transmission Lines
Loading Capability Limits of Transmission LinesLoading Capability Limits of Transmission Lines
Loading Capability Limits of Transmission Lines
 
Protection of transmission lines(encrypted)
Protection of transmission lines(encrypted)Protection of transmission lines(encrypted)
Protection of transmission lines(encrypted)
 
POWER SYSTEM PROTECTION
POWER SYSTEM PROTECTION POWER SYSTEM PROTECTION
POWER SYSTEM PROTECTION
 
Protection of alternator
Protection of alternatorProtection of alternator
Protection of alternator
 
Harmonics
HarmonicsHarmonics
Harmonics
 
Types of relay
Types of relayTypes of relay
Types of relay
 
Protection against overvoltage
Protection against overvoltageProtection against overvoltage
Protection against overvoltage
 
Generator and Transformer Protection (PART 1)
Generator and Transformer Protection (PART 1)Generator and Transformer Protection (PART 1)
Generator and Transformer Protection (PART 1)
 
Circuit breaker arc interruption.pptx
Circuit breaker arc interruption.pptxCircuit breaker arc interruption.pptx
Circuit breaker arc interruption.pptx
 
Static relay
Static relayStatic relay
Static relay
 
Speed control of Three phase Induction motor using AC voltage regulator
Speed control of Three phase Induction motor using AC voltage regulatorSpeed control of Three phase Induction motor using AC voltage regulator
Speed control of Three phase Induction motor using AC voltage regulator
 
Skin effect, proximity effect, ferranti effect, corona discharge
Skin effect, proximity effect, ferranti effect, corona dischargeSkin effect, proximity effect, ferranti effect, corona discharge
Skin effect, proximity effect, ferranti effect, corona discharge
 
Alternator protection
Alternator protectionAlternator protection
Alternator protection
 
Unit 03 Protective relays
Unit  03 Protective relaysUnit  03 Protective relays
Unit 03 Protective relays
 
Measurement of hvac (High Voltage Engineering )
Measurement  of  hvac (High Voltage Engineering )Measurement  of  hvac (High Voltage Engineering )
Measurement of hvac (High Voltage Engineering )
 
Relays and its types - complete guide
Relays and its types - complete guideRelays and its types - complete guide
Relays and its types - complete guide
 
automatic voltage regulator
automatic voltage regulator automatic voltage regulator
automatic voltage regulator
 
Transient in Power system
Transient in Power systemTransient in Power system
Transient in Power system
 
Firing angle control
Firing angle controlFiring angle control
Firing angle control
 
Methods of Voltage Control
Methods of Voltage ControlMethods of Voltage Control
Methods of Voltage Control
 

Similaire à STATIC AND DIGITAL RELAYS

Electromagnetic Protection (PART I)
Electromagnetic Protection (PART I)Electromagnetic Protection (PART I)
Electromagnetic Protection (PART I)Dr. Rohit Babu
 
Report on minor project
Report on minor projectReport on minor project
Report on minor projectAnil Maurya
 
Static Relay Presentation
Static Relay PresentationStatic Relay Presentation
Static Relay PresentationRohitkmt
 
Basiic Electronicss_chapter third-3.pptx
Basiic Electronicss_chapter third-3.pptxBasiic Electronicss_chapter third-3.pptx
Basiic Electronicss_chapter third-3.pptxssuser566f62
 
Static_relay_sgp_............................
Static_relay_sgp_............................Static_relay_sgp_............................
Static_relay_sgp_............................MANOJ KHARADE
 
Frequency to voltage converter.final
Frequency to voltage converter.finalFrequency to voltage converter.final
Frequency to voltage converter.finalprashant singh
 
IRJET- Auto Selection of any Available Phase, in Three Phase Supply System
IRJET- Auto Selection of any Available Phase, in Three Phase Supply SystemIRJET- Auto Selection of any Available Phase, in Three Phase Supply System
IRJET- Auto Selection of any Available Phase, in Three Phase Supply SystemIRJET Journal
 
Smart Wireless Battery Charger with Charging Monitor: A Review
Smart Wireless Battery Charger with Charging Monitor: A ReviewSmart Wireless Battery Charger with Charging Monitor: A Review
Smart Wireless Battery Charger with Charging Monitor: A ReviewIRJET Journal
 
SPEED CONTROL OF SEPARATELY EXCITED DC MOTOR USING POWER ELECTRONIC CONVERTER
 SPEED CONTROL OF SEPARATELY EXCITED DC MOTOR USING POWER ELECTRONIC CONVERTER  SPEED CONTROL OF SEPARATELY EXCITED DC MOTOR USING POWER ELECTRONIC CONVERTER
SPEED CONTROL OF SEPARATELY EXCITED DC MOTOR USING POWER ELECTRONIC CONVERTER ijiert bestjournal
 
IRJET- Wireless Power Theft Monitoring System using Zigbee
IRJET- Wireless Power Theft Monitoring System using ZigbeeIRJET- Wireless Power Theft Monitoring System using Zigbee
IRJET- Wireless Power Theft Monitoring System using ZigbeeIRJET Journal
 
“Microcontroller Based Substation Monitoring system with gsm modem”.
“Microcontroller Based Substation Monitoring system with gsm modem”.“Microcontroller Based Substation Monitoring system with gsm modem”.
“Microcontroller Based Substation Monitoring system with gsm modem”.Priya Rachakonda
 
Distribu pQ.pptx
Distribu pQ.pptxDistribu pQ.pptx
Distribu pQ.pptxbhuvana71
 
Pre Final Year project/ mini project for Electronics and communication engine...
Pre Final Year project/ mini project for Electronics and communication engine...Pre Final Year project/ mini project for Electronics and communication engine...
Pre Final Year project/ mini project for Electronics and communication engine...Shirshendu Das
 
Electromagnetic Protection (PART 2)
Electromagnetic Protection (PART 2)Electromagnetic Protection (PART 2)
Electromagnetic Protection (PART 2)Dr. Rohit Babu
 
Microcontroller based multifunction_relay
Microcontroller based multifunction_relayMicrocontroller based multifunction_relay
Microcontroller based multifunction_relayRajeev Kumar
 
Electronics Lab Manual by Er. Swapnil V. Kaware
Electronics Lab Manual by Er. Swapnil V. KawareElectronics Lab Manual by Er. Swapnil V. Kaware
Electronics Lab Manual by Er. Swapnil V. KawareProf. Swapnil V. Kaware
 

Similaire à STATIC AND DIGITAL RELAYS (20)

Electromagnetic Protection (PART I)
Electromagnetic Protection (PART I)Electromagnetic Protection (PART I)
Electromagnetic Protection (PART I)
 
Report on minor project
Report on minor projectReport on minor project
Report on minor project
 
Relays
RelaysRelays
Relays
 
Static Relay Presentation
Static Relay PresentationStatic Relay Presentation
Static Relay Presentation
 
Basiic Electronicss_chapter third-3.pptx
Basiic Electronicss_chapter third-3.pptxBasiic Electronicss_chapter third-3.pptx
Basiic Electronicss_chapter third-3.pptx
 
Transducers.pptx
Transducers.pptxTransducers.pptx
Transducers.pptx
 
Static_relay_sgp_............................
Static_relay_sgp_............................Static_relay_sgp_............................
Static_relay_sgp_............................
 
Frequency to voltage converter.final
Frequency to voltage converter.finalFrequency to voltage converter.final
Frequency to voltage converter.final
 
Untitled document.PDF
Untitled document.PDFUntitled document.PDF
Untitled document.PDF
 
IRJET- Auto Selection of any Available Phase, in Three Phase Supply System
IRJET- Auto Selection of any Available Phase, in Three Phase Supply SystemIRJET- Auto Selection of any Available Phase, in Three Phase Supply System
IRJET- Auto Selection of any Available Phase, in Three Phase Supply System
 
Smart Wireless Battery Charger with Charging Monitor: A Review
Smart Wireless Battery Charger with Charging Monitor: A ReviewSmart Wireless Battery Charger with Charging Monitor: A Review
Smart Wireless Battery Charger with Charging Monitor: A Review
 
SPEED CONTROL OF SEPARATELY EXCITED DC MOTOR USING POWER ELECTRONIC CONVERTER
 SPEED CONTROL OF SEPARATELY EXCITED DC MOTOR USING POWER ELECTRONIC CONVERTER  SPEED CONTROL OF SEPARATELY EXCITED DC MOTOR USING POWER ELECTRONIC CONVERTER
SPEED CONTROL OF SEPARATELY EXCITED DC MOTOR USING POWER ELECTRONIC CONVERTER
 
IRJET- Wireless Power Theft Monitoring System using Zigbee
IRJET- Wireless Power Theft Monitoring System using ZigbeeIRJET- Wireless Power Theft Monitoring System using Zigbee
IRJET- Wireless Power Theft Monitoring System using Zigbee
 
“Microcontroller Based Substation Monitoring system with gsm modem”.
“Microcontroller Based Substation Monitoring system with gsm modem”.“Microcontroller Based Substation Monitoring system with gsm modem”.
“Microcontroller Based Substation Monitoring system with gsm modem”.
 
Distribu pQ.pptx
Distribu pQ.pptxDistribu pQ.pptx
Distribu pQ.pptx
 
Pre Final Year project/ mini project for Electronics and communication engine...
Pre Final Year project/ mini project for Electronics and communication engine...Pre Final Year project/ mini project for Electronics and communication engine...
Pre Final Year project/ mini project for Electronics and communication engine...
 
Lecture (11.11.22).pptx
Lecture (11.11.22).pptxLecture (11.11.22).pptx
Lecture (11.11.22).pptx
 
Electromagnetic Protection (PART 2)
Electromagnetic Protection (PART 2)Electromagnetic Protection (PART 2)
Electromagnetic Protection (PART 2)
 
Microcontroller based multifunction_relay
Microcontroller based multifunction_relayMicrocontroller based multifunction_relay
Microcontroller based multifunction_relay
 
Electronics Lab Manual by Er. Swapnil V. Kaware
Electronics Lab Manual by Er. Swapnil V. KawareElectronics Lab Manual by Er. Swapnil V. Kaware
Electronics Lab Manual by Er. Swapnil V. Kaware
 

Plus de Dr. Rohit Babu

EDS Unit 1 (Part 1).pptx
EDS Unit 1 (Part 1).pptxEDS Unit 1 (Part 1).pptx
EDS Unit 1 (Part 1).pptxDr. Rohit Babu
 
EDS Unit 3 (Part 1).pptx
EDS Unit 3 (Part 1).pptxEDS Unit 3 (Part 1).pptx
EDS Unit 3 (Part 1).pptxDr. Rohit Babu
 
EDS Unit 4 (Protection and Coordination).pptx
EDS Unit 4 (Protection and Coordination).pptxEDS Unit 4 (Protection and Coordination).pptx
EDS Unit 4 (Protection and Coordination).pptxDr. Rohit Babu
 
EDS Unit 3 (Part 2).pptx
EDS Unit 3 (Part 2).pptxEDS Unit 3 (Part 2).pptx
EDS Unit 3 (Part 2).pptxDr. Rohit Babu
 
Electrical Distribution Systems: Syllabus
Electrical Distribution Systems: SyllabusElectrical Distribution Systems: Syllabus
Electrical Distribution Systems: SyllabusDr. Rohit Babu
 
PROTECTION AGAINST OVER VOLTAGE AND GROUNDING Part 2
PROTECTION AGAINST OVER VOLTAGE AND GROUNDING Part 2PROTECTION AGAINST OVER VOLTAGE AND GROUNDING Part 2
PROTECTION AGAINST OVER VOLTAGE AND GROUNDING Part 2Dr. Rohit Babu
 
PROTECTION AGAINST OVER VOLTAGE AND GROUNDING Part 1
PROTECTION AGAINST OVER VOLTAGE AND GROUNDING Part 1PROTECTION AGAINST OVER VOLTAGE AND GROUNDING Part 1
PROTECTION AGAINST OVER VOLTAGE AND GROUNDING Part 1Dr. Rohit Babu
 
FEEDER AND BUS BAR PROTECTION
FEEDER AND BUS BAR PROTECTION FEEDER AND BUS BAR PROTECTION
FEEDER AND BUS BAR PROTECTION Dr. Rohit Babu
 
PROTECTION AGAINST OVER VOLTAGE AND GROUNDING
PROTECTION AGAINST OVER VOLTAGE AND GROUNDINGPROTECTION AGAINST OVER VOLTAGE AND GROUNDING
PROTECTION AGAINST OVER VOLTAGE AND GROUNDINGDr. Rohit Babu
 
FEEDER AND BUS BAR PROTECTION
FEEDER AND BUS BAR PROTECTIONFEEDER AND BUS BAR PROTECTION
FEEDER AND BUS BAR PROTECTIONDr. Rohit Babu
 
Generator and Transformer Protection (PART 2)
Generator and Transformer Protection (PART 2)Generator and Transformer Protection (PART 2)
Generator and Transformer Protection (PART 2)Dr. Rohit Babu
 
Electromagnetic Protection (PART III)
Electromagnetic Protection (PART III)Electromagnetic Protection (PART III)
Electromagnetic Protection (PART III)Dr. Rohit Babu
 
SGP Syllabus as per JNTU-K
SGP Syllabus as per JNTU-KSGP Syllabus as per JNTU-K
SGP Syllabus as per JNTU-KDr. Rohit Babu
 
Circuit Breaker: Part 2
Circuit Breaker: Part 2Circuit Breaker: Part 2
Circuit Breaker: Part 2Dr. Rohit Babu
 

Plus de Dr. Rohit Babu (18)

EDS Unit 6.pptx
EDS Unit 6.pptxEDS Unit 6.pptx
EDS Unit 6.pptx
 
EDS Unit 5.pptx
EDS Unit 5.pptxEDS Unit 5.pptx
EDS Unit 5.pptx
 
EDS Unit 1 (Part 1).pptx
EDS Unit 1 (Part 1).pptxEDS Unit 1 (Part 1).pptx
EDS Unit 1 (Part 1).pptx
 
EDS Unit 3 (Part 1).pptx
EDS Unit 3 (Part 1).pptxEDS Unit 3 (Part 1).pptx
EDS Unit 3 (Part 1).pptx
 
EDS Unit 4 (Protection and Coordination).pptx
EDS Unit 4 (Protection and Coordination).pptxEDS Unit 4 (Protection and Coordination).pptx
EDS Unit 4 (Protection and Coordination).pptx
 
EDS Unit 3 (Part 2).pptx
EDS Unit 3 (Part 2).pptxEDS Unit 3 (Part 2).pptx
EDS Unit 3 (Part 2).pptx
 
HVDC Syllabus.pptx
HVDC Syllabus.pptxHVDC Syllabus.pptx
HVDC Syllabus.pptx
 
Electrical Distribution Systems: Syllabus
Electrical Distribution Systems: SyllabusElectrical Distribution Systems: Syllabus
Electrical Distribution Systems: Syllabus
 
PROTECTION AGAINST OVER VOLTAGE AND GROUNDING Part 2
PROTECTION AGAINST OVER VOLTAGE AND GROUNDING Part 2PROTECTION AGAINST OVER VOLTAGE AND GROUNDING Part 2
PROTECTION AGAINST OVER VOLTAGE AND GROUNDING Part 2
 
PROTECTION AGAINST OVER VOLTAGE AND GROUNDING Part 1
PROTECTION AGAINST OVER VOLTAGE AND GROUNDING Part 1PROTECTION AGAINST OVER VOLTAGE AND GROUNDING Part 1
PROTECTION AGAINST OVER VOLTAGE AND GROUNDING Part 1
 
FEEDER AND BUS BAR PROTECTION
FEEDER AND BUS BAR PROTECTION FEEDER AND BUS BAR PROTECTION
FEEDER AND BUS BAR PROTECTION
 
PROTECTION AGAINST OVER VOLTAGE AND GROUNDING
PROTECTION AGAINST OVER VOLTAGE AND GROUNDINGPROTECTION AGAINST OVER VOLTAGE AND GROUNDING
PROTECTION AGAINST OVER VOLTAGE AND GROUNDING
 
FEEDER AND BUS BAR PROTECTION
FEEDER AND BUS BAR PROTECTIONFEEDER AND BUS BAR PROTECTION
FEEDER AND BUS BAR PROTECTION
 
Generator and Transformer Protection (PART 2)
Generator and Transformer Protection (PART 2)Generator and Transformer Protection (PART 2)
Generator and Transformer Protection (PART 2)
 
Electromagnetic Protection (PART III)
Electromagnetic Protection (PART III)Electromagnetic Protection (PART III)
Electromagnetic Protection (PART III)
 
SGP Syllabus as per JNTU-K
SGP Syllabus as per JNTU-KSGP Syllabus as per JNTU-K
SGP Syllabus as per JNTU-K
 
Circuit Breaker: Part 2
Circuit Breaker: Part 2Circuit Breaker: Part 2
Circuit Breaker: Part 2
 
Circuit Breaker
Circuit BreakerCircuit Breaker
Circuit Breaker
 

Dernier

APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICS
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICSAPPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICS
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICSKurinjimalarL3
 
Processing & Properties of Floor and Wall Tiles.pptx
Processing & Properties of Floor and Wall Tiles.pptxProcessing & Properties of Floor and Wall Tiles.pptx
Processing & Properties of Floor and Wall Tiles.pptxpranjaldaimarysona
 
College Call Girls Nashik Nehal 7001305949 Independent Escort Service Nashik
College Call Girls Nashik Nehal 7001305949 Independent Escort Service NashikCollege Call Girls Nashik Nehal 7001305949 Independent Escort Service Nashik
College Call Girls Nashik Nehal 7001305949 Independent Escort Service NashikCall Girls in Nagpur High Profile
 
The Most Attractive Pune Call Girls Budhwar Peth 8250192130 Will You Miss Thi...
The Most Attractive Pune Call Girls Budhwar Peth 8250192130 Will You Miss Thi...The Most Attractive Pune Call Girls Budhwar Peth 8250192130 Will You Miss Thi...
The Most Attractive Pune Call Girls Budhwar Peth 8250192130 Will You Miss Thi...ranjana rawat
 
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete RecordCCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete RecordAsst.prof M.Gokilavani
 
Booking open Available Pune Call Girls Koregaon Park 6297143586 Call Hot Ind...
Booking open Available Pune Call Girls Koregaon Park  6297143586 Call Hot Ind...Booking open Available Pune Call Girls Koregaon Park  6297143586 Call Hot Ind...
Booking open Available Pune Call Girls Koregaon Park 6297143586 Call Hot Ind...Call Girls in Nagpur High Profile
 
Microscopic Analysis of Ceramic Materials.pptx
Microscopic Analysis of Ceramic Materials.pptxMicroscopic Analysis of Ceramic Materials.pptx
Microscopic Analysis of Ceramic Materials.pptxpurnimasatapathy1234
 
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur EscortsHigh Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escortsranjana rawat
 
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130Suhani Kapoor
 
SPICE PARK APR2024 ( 6,793 SPICE Models )
SPICE PARK APR2024 ( 6,793 SPICE Models )SPICE PARK APR2024 ( 6,793 SPICE Models )
SPICE PARK APR2024 ( 6,793 SPICE Models )Tsuyoshi Horigome
 
MANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLS
MANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLSMANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLS
MANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLSSIVASHANKAR N
 
Call for Papers - Educational Administration: Theory and Practice, E-ISSN: 21...
Call for Papers - Educational Administration: Theory and Practice, E-ISSN: 21...Call for Papers - Educational Administration: Theory and Practice, E-ISSN: 21...
Call for Papers - Educational Administration: Theory and Practice, E-ISSN: 21...Christo Ananth
 
Call Girls in Nagpur Suman Call 7001035870 Meet With Nagpur Escorts
Call Girls in Nagpur Suman Call 7001035870 Meet With Nagpur EscortsCall Girls in Nagpur Suman Call 7001035870 Meet With Nagpur Escorts
Call Girls in Nagpur Suman Call 7001035870 Meet With Nagpur EscortsCall Girls in Nagpur High Profile
 
Introduction to IEEE STANDARDS and its different types.pptx
Introduction to IEEE STANDARDS and its different types.pptxIntroduction to IEEE STANDARDS and its different types.pptx
Introduction to IEEE STANDARDS and its different types.pptxupamatechverse
 
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...Christo Ananth
 
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...ranjana rawat
 
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...Soham Mondal
 
HARDNESS, FRACTURE TOUGHNESS AND STRENGTH OF CERAMICS
HARDNESS, FRACTURE TOUGHNESS AND STRENGTH OF CERAMICSHARDNESS, FRACTURE TOUGHNESS AND STRENGTH OF CERAMICS
HARDNESS, FRACTURE TOUGHNESS AND STRENGTH OF CERAMICSRajkumarAkumalla
 
Introduction to Multiple Access Protocol.pptx
Introduction to Multiple Access Protocol.pptxIntroduction to Multiple Access Protocol.pptx
Introduction to Multiple Access Protocol.pptxupamatechverse
 

Dernier (20)

APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICS
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICSAPPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICS
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICS
 
Processing & Properties of Floor and Wall Tiles.pptx
Processing & Properties of Floor and Wall Tiles.pptxProcessing & Properties of Floor and Wall Tiles.pptx
Processing & Properties of Floor and Wall Tiles.pptx
 
College Call Girls Nashik Nehal 7001305949 Independent Escort Service Nashik
College Call Girls Nashik Nehal 7001305949 Independent Escort Service NashikCollege Call Girls Nashik Nehal 7001305949 Independent Escort Service Nashik
College Call Girls Nashik Nehal 7001305949 Independent Escort Service Nashik
 
The Most Attractive Pune Call Girls Budhwar Peth 8250192130 Will You Miss Thi...
The Most Attractive Pune Call Girls Budhwar Peth 8250192130 Will You Miss Thi...The Most Attractive Pune Call Girls Budhwar Peth 8250192130 Will You Miss Thi...
The Most Attractive Pune Call Girls Budhwar Peth 8250192130 Will You Miss Thi...
 
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete RecordCCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
 
Booking open Available Pune Call Girls Koregaon Park 6297143586 Call Hot Ind...
Booking open Available Pune Call Girls Koregaon Park  6297143586 Call Hot Ind...Booking open Available Pune Call Girls Koregaon Park  6297143586 Call Hot Ind...
Booking open Available Pune Call Girls Koregaon Park 6297143586 Call Hot Ind...
 
Microscopic Analysis of Ceramic Materials.pptx
Microscopic Analysis of Ceramic Materials.pptxMicroscopic Analysis of Ceramic Materials.pptx
Microscopic Analysis of Ceramic Materials.pptx
 
DJARUM4D - SLOT GACOR ONLINE | SLOT DEMO ONLINE
DJARUM4D - SLOT GACOR ONLINE | SLOT DEMO ONLINEDJARUM4D - SLOT GACOR ONLINE | SLOT DEMO ONLINE
DJARUM4D - SLOT GACOR ONLINE | SLOT DEMO ONLINE
 
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur EscortsHigh Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
 
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
 
SPICE PARK APR2024 ( 6,793 SPICE Models )
SPICE PARK APR2024 ( 6,793 SPICE Models )SPICE PARK APR2024 ( 6,793 SPICE Models )
SPICE PARK APR2024 ( 6,793 SPICE Models )
 
MANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLS
MANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLSMANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLS
MANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLS
 
Call for Papers - Educational Administration: Theory and Practice, E-ISSN: 21...
Call for Papers - Educational Administration: Theory and Practice, E-ISSN: 21...Call for Papers - Educational Administration: Theory and Practice, E-ISSN: 21...
Call for Papers - Educational Administration: Theory and Practice, E-ISSN: 21...
 
Call Girls in Nagpur Suman Call 7001035870 Meet With Nagpur Escorts
Call Girls in Nagpur Suman Call 7001035870 Meet With Nagpur EscortsCall Girls in Nagpur Suman Call 7001035870 Meet With Nagpur Escorts
Call Girls in Nagpur Suman Call 7001035870 Meet With Nagpur Escorts
 
Introduction to IEEE STANDARDS and its different types.pptx
Introduction to IEEE STANDARDS and its different types.pptxIntroduction to IEEE STANDARDS and its different types.pptx
Introduction to IEEE STANDARDS and its different types.pptx
 
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
 
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...
 
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
 
HARDNESS, FRACTURE TOUGHNESS AND STRENGTH OF CERAMICS
HARDNESS, FRACTURE TOUGHNESS AND STRENGTH OF CERAMICSHARDNESS, FRACTURE TOUGHNESS AND STRENGTH OF CERAMICS
HARDNESS, FRACTURE TOUGHNESS AND STRENGTH OF CERAMICS
 
Introduction to Multiple Access Protocol.pptx
Introduction to Multiple Access Protocol.pptxIntroduction to Multiple Access Protocol.pptx
Introduction to Multiple Access Protocol.pptx
 

STATIC AND DIGITAL RELAYS

  • 1. LENDI INSTITUTE OF ENGINEERING AND TECHNOLOGY Jonnada, Andhra Pradesh- 535005 Department of Electrical and Electronics Engineering UNIT -V STATIC AND DIGITAL RELAYS Presented by, Dr. Rohit Babu, Associate Professor
  • 2. Syllabus Department of Electrical and Electronics Engineering ∟Static relays ―Static relay components ―Static over current relays ―Static distance relay ―Micro processor based digital relays
  • 3. Static relay components Department of Electrical and Electronics Engineering Static Relays • Static relays contain electronic circuitry which may include transistors, ICs, diodes and other electronic components. • Static relays possess the advantages of having low burden on the CT and VT, fast operation, absence of mechanical inertia and contact trouble, long life and less maintenance. • Static relays have proved to be superior to electromechanical relays and they are being used for the protection of important lines, power stations and sub-stations. Yet they have not completely replaced electromechanical relays. • Static relays are treated as an addition to the family of relays. • Electromechanical relays continue to be in use because of their simplicity and low cost. • Their maintenance can be done by less qualified personnel, whereas the maintenance and repair of static relays requires personnel trained in solid state devices.
  • 4. Static relay components Department of Electrical and Electronics Engineering Static relays: These are solid state relays and employ semiconductor diodes, transistors, thyristors, logic gates, ICs, etc. The measuring circuit is a static circuit and there are no moving parts. In some static relays, a slave relay which is a dc polarised relay is used as the tripping device. Definition
  • 5. Static relay components Department of Electrical and Electronics Engineering The component of the static relay is shown in the figure below.
  • 6. Static Relay components Department of Electrical and Electronics Engineering 1. The input of the current transformer is connected to the transmission line, and their output is given to the rectifier. 2. The rectifier was rectifying the input signal and pass it to the relaying measuring unit. 3. The rectifying measuring unit has the comparators, level detector and the logic circuit. The output signal from relaying unit obtains only when the signal reaches the threshold value. The output of the relaying measuring unit acts as an input to the amplifier. 4. The amplifier amplifies the signal and gives the output to the output devices. 5. The output device activates the trip coil only when the relay operates. The output is obtained from the output devices only when the measurand has the well-defined value. The output device is activated and gives the tripping command to the trip circuit.
  • 7. Static relay components Department of Electrical and Electronics Engineering 6. The static relay only gives the response to the electrical signal. The other physical quantities like heat temperature etc. is first converted into the analogue and digital electrical signal and then act as an input for the relay.
  • 8. Static relay components Department of Electrical and Electronics Engineering ADVANTAGES OF STATIC RELAYS OVER ELECTROMAGNETIC RELAYS i. Low burden on CTs and VTs. The static relays consume less power and in most of the cases they draw power from the auxiliary dc supply ii. Fast response iii. Long life iv. High resistance to shock and vibration v. Less maintenance due to the absence of moving parts and bearings vi. Frequent operations cause no deterioration vii. Quick resetting and absence of overshoot viii. Compact size ix. Greater sensitivity as amplification can be provided easily x. Complex relaying characteristics can easily be obtained xi. Logic circuits can be used for complex protective schemes
  • 9. Static relay components Department of Electrical and Electronics Engineering 1. The components used by the static relay are very sensitive to the electrostatic discharges. The electrostatic discharges mean sudden flows of electrons between the charged objects. Thus special maintenance is provided to the components so that it does not affect by the electrostatic discharges. 2. The relay is easily affected by the high voltage surges. Thus, precaution should be taken for avoiding the damages through voltage spikes. 3. The working of the relay depends on the electrical components. 4. The relay has less overloading capacity. 5. The static relay is more costly as compared to the electromagnetic relay. 6. The construction of the relay is easily affected by the surrounding interference. LIMITATIONS OF STATIC RELAY
  • 10. Static Overcurrent relay Department of Electrical and Electronics Engineering 1. Static Instantaneous Overcurrent Relay 1. The current derived from the main CT is fed to the input transformer which gives a proportional output voltage. 2. The input transformer has an air gap in the iron core to give linearity in the current/voltage relationship up to the highest value of current expected, and is provided with tappings on its secondary winding to obtain different current settings. 3. The output voltage of the transformer is rectified through a rectifier and then filtered at a single stage to avoid undesirable time delay in filtering so as to ensure high speed of operation.
  • 11. Static Overcurrent relay Department of Electrical and Electronics Engineering 4. A fixed portion of the rectified and filtered voltage (through a potential divider) is compared against a preset pick-up value by a level detector and if it exceeds the pick-up value, a signal through an amplifier is given to the output device which issues the trip signal. 5. The output device may either be a static thyristor circuit or an electromagnetic slave relay.
  • 12. Static Overcurrent relay Department of Electrical and Electronics Engineering 2. Static Definite Time Overcurrent Relay The operating time of a definite time overcurrent relay is constant, irrespective of the level of the fault current.
  • 13. Static Overcurrent relay Department of Electrical and Electronics Engineering 1. The input current signal derived from the main CT is converted to a proportional voltage signal by the input transformer and then rectified, filtered and compared with the preset threshold value of the level detector (1). 2. If the voltage exceeds the preset threshold value, the level detector gives an output voltage, thereby the charging of the capacitor C of the RC timing circuit starts. 3. As soon as the voltage across the capacitor exceeds the preset threshold value (VT) of level detector (2), a signal through the amplifier is given to the output device which issues the trip signal. 4. Potentiometers P1 and P2 are used for current setting and time setting, respectively.
  • 14. Static Overcurrent relay Department of Electrical and Electronics Engineering If VT is the threshold value of the level detector, the time TC required to reach this voltage depends upon the charging time of the capacitor C of the RC timing circuit, given by, where V is the voltage applied to the capacitor. If V, R and C are constant, the charging time for a given value of VT will be constant. The time TC can be varied by varying R-C combinations and VT.
  • 15. Static Overcurrent relay Department of Electrical and Electronics Engineering 3. Static Inverse-time Overcurrent Relay The operating time of the inverse-time overcurrent relay decreases with increasing fault current.
  • 16. Static Overcurrent relay Department of Electrical and Electronics Engineering 1. The current signal is converted to a proportional voltage signal by the input transformer and then rectified, filtered and compared with a reference voltage of the level detector (1) set by the potentiometer P1. 2. Under normal conditions, i.e. when the input current is low, switch S1 is ON, short-circuiting the capacitor C of the RC timing circuit and switch S2 is OFF. 3. As soon as the input voltage exceeds the preset reference voltage of the level detector (1), switch S1 is switched OFF and switch S2 is switched ON and the charging of capacitor C of the timing circuit starts from a voltage proportional to the current. 4. Switches S1 and S2 are made of static components. 5. When the voltage across the capacitor C of the timing circuit exceeds the reference voltage of the level detector (2) as set by potentiometer P3, a signal is given to the output device through an amplifier. Finally, the output device issues the trip signal.
  • 17. Static Distance relay Department of Electrical and Electronics Engineering 4. Static Directional Overcurrent Relay 1. The directional overcurrent relay incorporates a directional unit which responds to power flow in a specified direction. 2. The directional relay senses the direction of power flow by means of a phase difference (f) between voltage (V) and current (I). 3. When f exceeds a certain predetermined value and the current is above the pick-up value, the directional overcurrent relay operates. 4. The directional relay is a double actuating quantity relay with one input as current I from CT and the other input as voltage V from VT. which can be used either as a directional relay or as a distance relay depending on the input quantities being fed.
  • 18. Static Distance relay Department of Electrical and Electronics Engineering 1. The inputs V and I are applied to phase comparator. 2. A phase shifter is added in voltage input circuit before applying it to the phase comparator to achieve the maximum output of the phase comparator under fault conditions. 3. The output of the phase comparator is given to the level detector and then to the output device through an amplifier.
  • 19. Static Distance relay Department of Electrical and Electronics Engineering 4. If the output of the phase comparator exceeds the preset reference voltage of the level detector, the output device issues the trip signal. 5. There are two main types of phase comparators used for the purpose. 6. One of these is the Hall effect types comparator which has been used in USSR, whereas all other countries have preferred the rectifier bridge type of comparator due to its lower cost and the higher outputs obtainable as compared to the Hall elements.
  • 20. Microprocessor Based Relay Department of Electrical and Electronics Engineering Microprocessor relays provide many functions that were not available in electromechanical or solid-state designs. Relay logic is very important to understand the microprocessor-based relay. The relay can be ON or OFF, that is, it has two stable states.
  • 21. Microprocessor Based Relay Department of Electrical and Electronics Engineering 1. Similarly, the output of a logic function is activated, that is, high or deactivated, that is, low. 2. The three basic logical functions are: AND, OR and NOT functions. 3. All of these functions can be achieved using transistors as well. It is called transistor-transistor logic. 4. The output of the CT line is given to the input receiver block where the signal is processed. 5. Signal processing includes overvoltage protector, rectifier, smoothing filters, auxiliary CT, etc., depending on the requirements. 6. This signal is an analog signal. The A / D converter converts this into a digital signal that is accepted by the microprocessor. 7. The microprocessor is a block of decision making. 8. The received digital signal is compared with the reference to generate the appropriate trigger signal.
  • 22. Microprocessor Based Relay Department of Electrical and Electronics Engineering 10. This is a digital signal that is converted back to analog to operate the trip coil. 11. This is achieved by the D / A converter. 12. The data logger captures the data and sends it to the microprocessor when there is a request from the microprocessor. 13. The information can be displayed with a suitable display device when taking the signal from the microprocessor. 14. The main advantage of this relay is that it is programmable. 15. The program can handle the online calculations and make the decision accordingly. 16. Another important advantage of the microprocessor-based relay is that a microprocessor unit can perform the retransmission operation of several systems.
  • 23. Microprocessor Based Relay Department of Electrical and Electronics Engineering Advantages of microprocesser based relay: Thus various advantages of microprocessor based relay are: 1. Very efficient and reliable. 2. Highly accurate. 3. Very fast in operation. 4. Programmable in nature. 5. A unit can perform retransmission of several systems. 6. economical for large systems. 7. Useful for centrally coordinated backup protection.