SlideShare a Scribd company logo
5
Most read
11
Most read
12
Most read
(OCT)
Visit www.seminarlinks.blogspot.in to Download
OVERVIEW
 INTRODUCTION
 WORKING PRINCIPLE
 CONVENTIONAL CURRENT TRANSFORMER
 OPTICAL CURRENT TRANSFORMER
 DESIGN OF OPTICAL CURRENT TRANSFORMER
 APPLICATIONS
 ADVANTAGES
 DISADVANTAGES
 CONCLUSION
INTRODUCTION
 An accurate electric current transducer is a key component of any
power system instrumentation.
 OCT’s defined as sensors that directly or indirectly use optical sensing
methods to measure electric currents .
Different types of OCT
Based on Faraday effect
Based on interferometric principle
Based on Bragg Grating
Micromechanical sensors with optical readout
WORKING PRINCIPLE
Magnetic OCT measures the electric current by means of faraday effect.
Faraday effects comprises of two principles :
Polarization of light
Polarization is a property of certain types of waves that describes the
orientation of their oscillations.
Polarization of light are mainly of three types :
 Linear polarization
 Circular polarization
 Elliptical polarization
Different Polarization Types
Linear polarization : when x and y
components of the electric field vector
E are in phase.
Circular polarization : when x and y
components of the field vector E have
same amplitude and are 900 phase
out.
Elliptical polarization: when phase
and amplitude of the x and y
components are different. (a) Linear Polarization
(b) Circular polarization
(c) Elliptical polarization
Birefringerence (or Double Refraction)
It is the phenomenon of splitting up of a light ray into o-ray and e-ray when
passed through an anisotropic material.
Birefringerence are of two types :
1. Linear birefringerance
2. Circular birefringerance
FARADAY EFFECT :
“Michael Faraday discovered that the
orientation of a linearly polarized light was rotated
under the influence of the magnetic field when the
light propagated in a piece of glass and the
rotation angle was proportional to the intensity of
the magnetic field”
Intensity, I=I0 cos2 ( - 45)
Optical Current Transformer (OCT)
The Faraday effect outlined in equation is a better format to apply to an MOCT,
because the rotation angle in this case is directly related to the enclosed electric
current.
By considering this property , Faraday’s mathematical equation is given by :
μ0 = the free-space permeability
I = current to be measured,
V=verdet constant,
P = permeability of the material,
N = number of turns of the optical path.
Conventional Current Transformer
The most used device for the measurement
of alternating current.
Construction consists of a ferromagnetic
core entirely enclosing the conductor.
The secondary winding has to be isolated
from high voltages to prevent short circuits.
Therefore the transformers are filled with
oils. It also helps in dissipating the heat.
The 10 current is translated to the 20
current by the turns ratio (n).
The 20 is measured with an ampere meter
in most of the cases.
The basic principle is the Amperes law.
Optical Current Transformer
MOCT ‘s are another type of transducers
,which are highly immune to EMI
MOCT uses optical sensing methods to
measure electric currents.
In the sensors several properties of the
signal carrier(light) can be influenced
MOCT’s are mainly based on Faraday
Effect.
The Optical Current transformer basically
consists of: light source, fibre optic cable,
polarizer, modulator and electronics part.
The MOCT consists mainly of electronic and optic part.
Light from a source enters an optical fibre polariser, which splits into two linear orthogonally
polarized light.
Light enters into the sensing head that includes a quarter wave plate .
Quarter wave plate splits the two linear orthogonal waves into right and left hand circularly
polarized waves.
Two waves travel at different speeds around the sensing fibre.
The difference in speed is proportional to the strength of the magnetic field.
Two waves reflects of a mirror and circular polarization of two waves gets reversed .
They travelled in the opposite direction of the magnetic field.
Finally ,two waves again reach the quarter wave plate and linear polarisation gets regained.
Design of Optical Current Transformer
Design is divided into two parts: the electronics part and the optical
Design of the electronics part again divided into analog model and digital model
The analog model of the electronics part is modelled with complex curve fitting method
This method is basically to obtain the transfer function model
The transfer function obtained is iterated by the Gauss-Newton method to increase the
accuracy
The above analog model is converted to the digital model by bilinear transformation
The bilinear transformation changes stable continuous time system to stable discrete time
system
Thus the digital model H(z) is obtained from the analog model H(s)
The optics model is developed using Jones Calculus method
E0 and Ei represents the output and input energy.
In Jones calculus method polarised light is represented by a corresponding Jones Vector
And the optical element is represented by a corresponding Jones Matrix
APPLICATIONS
The MOCT is designed to operate in a transparent manner with modern
electronic meters and digital relays, which have been adopted for a low energy
analog signal interface.
Makes the output signal insensitive to shock & vibration.
Most suited for outdoor type applications. E.g. substations
Accurate measurement of fault currents.
ADVANTAGES
No risks of fires & explosions.
High immunity to Electromagnetic interferences.
Wide frequency response.
Larger Dynamic Range.
Low voltage outputs-compatible with the inputs of digital to analog converters.
No need to use metallic wires to transfer the signal and so simpler insulation structure than
conventional current transformer.
OCT analog output may have significant white noise , but the white noise does not affect the
accuracy or protection performance.
Temperature up to 500c do not adversely affect the performance of the OCT.
No requirement for oil or gas insulation system , environmentally safe.
No magnetic core ferroresonance or saturation limits.
Total isolation from surges for microprocessor based meters and relays.
CONCLUSION
A new type of current transducer is introduced known as magneto optical
current transducer.
This magneto optical current transducer eliminates many of the drawbacks of
the conventional current transformers.
By applying Faraday’s principle this transducer provides an easier and more
accurate way of current measurements. This MOCT is widely used in power
systems and substations nowadays.
Thank youVisit www.seminarlinks.blogspot.in to Download

More Related Content

PPTX
Wind turbine
PDF
Current transformer (ct)
PPTX
Agonists and antagonists
PPTX
Essential drug list
PPTX
Gene structure and expreession
PPTX
Network Topology
PPTX
Applications of power electronics in HVDC
PPTX
Electro muscle stimulator treatment
Wind turbine
Current transformer (ct)
Agonists and antagonists
Essential drug list
Gene structure and expreession
Network Topology
Applications of power electronics in HVDC
Electro muscle stimulator treatment

What's hot (20)

PDF
Per unit analysis
PPTX
Facts controller
PPTX
Simplified analysis of graetz circuit copy - copy
PDF
Static relay
PPSX
Load Forecasting
POTX
Sinusoidal pwm
PPTX
Firing angle control
PPTX
Energy Meters
PPTX
Protection of alternator
PDF
DISTRIBUTED GENERATION TECHNOLOGIES
PPTX
Shunt active power filter
PPTX
Three phase inverter - 180 and 120 Degree Mode of Conduction
PPTX
static series synchronus compensator
PPTX
MTDC SYSTEMS
PPT
Automatic meter reading
PPTX
Power quality
PPTX
WIDE AREA MONITORING SYSTEMS(WAMS)
PPTX
Flyback converter
PPTX
Power theft detection
PPTX
Flexible ac transmission system
Per unit analysis
Facts controller
Simplified analysis of graetz circuit copy - copy
Static relay
Load Forecasting
Sinusoidal pwm
Firing angle control
Energy Meters
Protection of alternator
DISTRIBUTED GENERATION TECHNOLOGIES
Shunt active power filter
Three phase inverter - 180 and 120 Degree Mode of Conduction
static series synchronus compensator
MTDC SYSTEMS
Automatic meter reading
Power quality
WIDE AREA MONITORING SYSTEMS(WAMS)
Flyback converter
Power theft detection
Flexible ac transmission system
Ad

Viewers also liked (11)

PPTX
Magneto-optic-current-transformer
PPTX
POLARIZATION - BIREFRINGENCE AND HUYGEN'S THEORY OF DOUBLE REFRACTION
PPT
Moct magneto-optic-current-transformer
PPT
Edm wire cut presentation
PPTX
Wireless Charging
PPT
MAGNETIC OPTICAL CURRENT TRANSFORMER
PPT
Magneto optic current transformer
PDF
PDF
Near Field Communication (NFC)
PDF
Atmospheric Vortex Engine (AVE)
PPT
Electric discharge machining by shaikh mohd aslam
Magneto-optic-current-transformer
POLARIZATION - BIREFRINGENCE AND HUYGEN'S THEORY OF DOUBLE REFRACTION
Moct magneto-optic-current-transformer
Edm wire cut presentation
Wireless Charging
MAGNETIC OPTICAL CURRENT TRANSFORMER
Magneto optic current transformer
Near Field Communication (NFC)
Atmospheric Vortex Engine (AVE)
Electric discharge machining by shaikh mohd aslam
Ad

Similar to Optical Current Transformer (OCT) (20)

PPTX
Optical Current Transformer
PPT
Optical current transformer and its applications
PPTX
Optical current transformer in modern substation
PDF
Magneto Optic Current Transformer Technology (MOCT)
PPT
MOCT (magneto optical current transformer)- presentation
PDF
1x2 Digital Optoelectronic Switch using MZI structure and studying the Effect...
PDF
Emi free dc-dc buck converter for aerospace
DOCX
Amit mahto final
PPTX
Spin valve transistor
PDF
A novel model of rf mems shunt switch
DOCX
Av335 instrumentation lab report
PDF
Wireless Power Transfer Project
PDF
WIRELESS POWER TRANSMISSION Project
DOCX
Final project report
PPSX
Slideshow on transducers
PDF
REPORT-IN-NGEC-9B-GROUP-12.pdf for maritime students
PDF
REPORT-IN-NGEC-9B-GROUP-12.pdf school purposes
PDF
REPORT-IN-NGEC-9B-GROUP Presentation for students
PDF
REPORT-IN-NGEC-9B-GROUP-12.pdf for maritime students
PDF
REPORT-IN-NGEC-9B-GROUP-12 for students.
Optical Current Transformer
Optical current transformer and its applications
Optical current transformer in modern substation
Magneto Optic Current Transformer Technology (MOCT)
MOCT (magneto optical current transformer)- presentation
1x2 Digital Optoelectronic Switch using MZI structure and studying the Effect...
Emi free dc-dc buck converter for aerospace
Amit mahto final
Spin valve transistor
A novel model of rf mems shunt switch
Av335 instrumentation lab report
Wireless Power Transfer Project
WIRELESS POWER TRANSMISSION Project
Final project report
Slideshow on transducers
REPORT-IN-NGEC-9B-GROUP-12.pdf for maritime students
REPORT-IN-NGEC-9B-GROUP-12.pdf school purposes
REPORT-IN-NGEC-9B-GROUP Presentation for students
REPORT-IN-NGEC-9B-GROUP-12.pdf for maritime students
REPORT-IN-NGEC-9B-GROUP-12 for students.

More from Seminar Links (20)

PDF
Artificial Intelligence (A.I.) in Schools (PPT)
PDF
Sustainable Materials Management (SMM)
PDF
Are Top Grades Enough (PPT)
PDF
AI and Youth Employment (PPT)
PDF
Environmental Impacts of COVID-19 Pandemic: PPT
PDF
20 Latest Computer Science Seminar Topics on Emerging Technologies
PDF
Claytronics | Programmable Matter | PPT
PDF
Three-dimensional Holographic Projection Technology PPT | 2018
PDF
MicroLED : Latest Display Technology | PPT
DOCX
Performance of 400 kV line insulators under pollution | PDF | DOC | PPT
PDF
Box Pushing Technique
PDF
Highest Largest Tallest Longest in India 2018
PDF
Artificial photosynthesis PPT
PDF
How to prevent WannaCry Ransomware
PDF
Dams PPT
PDF
Bio mass Energy
PDF
Babbitt material ppt
PDF
Ceramic Bearing ppt
PDF
Carbon Foam Military Applications
PDF
Future challenges in computer science
Artificial Intelligence (A.I.) in Schools (PPT)
Sustainable Materials Management (SMM)
Are Top Grades Enough (PPT)
AI and Youth Employment (PPT)
Environmental Impacts of COVID-19 Pandemic: PPT
20 Latest Computer Science Seminar Topics on Emerging Technologies
Claytronics | Programmable Matter | PPT
Three-dimensional Holographic Projection Technology PPT | 2018
MicroLED : Latest Display Technology | PPT
Performance of 400 kV line insulators under pollution | PDF | DOC | PPT
Box Pushing Technique
Highest Largest Tallest Longest in India 2018
Artificial photosynthesis PPT
How to prevent WannaCry Ransomware
Dams PPT
Bio mass Energy
Babbitt material ppt
Ceramic Bearing ppt
Carbon Foam Military Applications
Future challenges in computer science

Recently uploaded (20)

PDF
Network Security Unit 5.pdf for BCA BBA.
PPTX
Digital-Transformation-Roadmap-for-Companies.pptx
PDF
cuic standard and advanced reporting.pdf
PPTX
VMware vSphere Foundation How to Sell Presentation-Ver1.4-2-14-2024.pptx
PPTX
Spectroscopy.pptx food analysis technology
PDF
Agricultural_Statistics_at_a_Glance_2022_0.pdf
PDF
Unlocking AI with Model Context Protocol (MCP)
PPTX
KOM of Painting work and Equipment Insulation REV00 update 25-dec.pptx
PDF
Peak of Data & AI Encore- AI for Metadata and Smarter Workflows
PDF
Build a system with the filesystem maintained by OSTree @ COSCUP 2025
PPTX
Big Data Technologies - Introduction.pptx
PDF
Dropbox Q2 2025 Financial Results & Investor Presentation
PDF
Reach Out and Touch Someone: Haptics and Empathic Computing
PDF
Per capita expenditure prediction using model stacking based on satellite ima...
PDF
Encapsulation theory and applications.pdf
PDF
KodekX | Application Modernization Development
PDF
Chapter 3 Spatial Domain Image Processing.pdf
PDF
Profit Center Accounting in SAP S/4HANA, S4F28 Col11
PPTX
Effective Security Operations Center (SOC) A Modern, Strategic, and Threat-In...
PDF
Approach and Philosophy of On baking technology
Network Security Unit 5.pdf for BCA BBA.
Digital-Transformation-Roadmap-for-Companies.pptx
cuic standard and advanced reporting.pdf
VMware vSphere Foundation How to Sell Presentation-Ver1.4-2-14-2024.pptx
Spectroscopy.pptx food analysis technology
Agricultural_Statistics_at_a_Glance_2022_0.pdf
Unlocking AI with Model Context Protocol (MCP)
KOM of Painting work and Equipment Insulation REV00 update 25-dec.pptx
Peak of Data & AI Encore- AI for Metadata and Smarter Workflows
Build a system with the filesystem maintained by OSTree @ COSCUP 2025
Big Data Technologies - Introduction.pptx
Dropbox Q2 2025 Financial Results & Investor Presentation
Reach Out and Touch Someone: Haptics and Empathic Computing
Per capita expenditure prediction using model stacking based on satellite ima...
Encapsulation theory and applications.pdf
KodekX | Application Modernization Development
Chapter 3 Spatial Domain Image Processing.pdf
Profit Center Accounting in SAP S/4HANA, S4F28 Col11
Effective Security Operations Center (SOC) A Modern, Strategic, and Threat-In...
Approach and Philosophy of On baking technology

Optical Current Transformer (OCT)

  • 2. OVERVIEW  INTRODUCTION  WORKING PRINCIPLE  CONVENTIONAL CURRENT TRANSFORMER  OPTICAL CURRENT TRANSFORMER  DESIGN OF OPTICAL CURRENT TRANSFORMER  APPLICATIONS  ADVANTAGES  DISADVANTAGES  CONCLUSION
  • 3. INTRODUCTION  An accurate electric current transducer is a key component of any power system instrumentation.  OCT’s defined as sensors that directly or indirectly use optical sensing methods to measure electric currents .
  • 4. Different types of OCT Based on Faraday effect Based on interferometric principle Based on Bragg Grating Micromechanical sensors with optical readout
  • 5. WORKING PRINCIPLE Magnetic OCT measures the electric current by means of faraday effect. Faraday effects comprises of two principles : Polarization of light Polarization is a property of certain types of waves that describes the orientation of their oscillations. Polarization of light are mainly of three types :  Linear polarization  Circular polarization  Elliptical polarization
  • 6. Different Polarization Types Linear polarization : when x and y components of the electric field vector E are in phase. Circular polarization : when x and y components of the field vector E have same amplitude and are 900 phase out. Elliptical polarization: when phase and amplitude of the x and y components are different. (a) Linear Polarization (b) Circular polarization (c) Elliptical polarization
  • 7. Birefringerence (or Double Refraction) It is the phenomenon of splitting up of a light ray into o-ray and e-ray when passed through an anisotropic material. Birefringerence are of two types : 1. Linear birefringerance 2. Circular birefringerance
  • 8. FARADAY EFFECT : “Michael Faraday discovered that the orientation of a linearly polarized light was rotated under the influence of the magnetic field when the light propagated in a piece of glass and the rotation angle was proportional to the intensity of the magnetic field” Intensity, I=I0 cos2 ( - 45)
  • 10. The Faraday effect outlined in equation is a better format to apply to an MOCT, because the rotation angle in this case is directly related to the enclosed electric current. By considering this property , Faraday’s mathematical equation is given by : μ0 = the free-space permeability I = current to be measured, V=verdet constant, P = permeability of the material, N = number of turns of the optical path.
  • 11. Conventional Current Transformer The most used device for the measurement of alternating current. Construction consists of a ferromagnetic core entirely enclosing the conductor. The secondary winding has to be isolated from high voltages to prevent short circuits. Therefore the transformers are filled with oils. It also helps in dissipating the heat. The 10 current is translated to the 20 current by the turns ratio (n). The 20 is measured with an ampere meter in most of the cases. The basic principle is the Amperes law.
  • 12. Optical Current Transformer MOCT ‘s are another type of transducers ,which are highly immune to EMI MOCT uses optical sensing methods to measure electric currents. In the sensors several properties of the signal carrier(light) can be influenced MOCT’s are mainly based on Faraday Effect. The Optical Current transformer basically consists of: light source, fibre optic cable, polarizer, modulator and electronics part.
  • 13. The MOCT consists mainly of electronic and optic part. Light from a source enters an optical fibre polariser, which splits into two linear orthogonally polarized light. Light enters into the sensing head that includes a quarter wave plate . Quarter wave plate splits the two linear orthogonal waves into right and left hand circularly polarized waves.
  • 14. Two waves travel at different speeds around the sensing fibre. The difference in speed is proportional to the strength of the magnetic field. Two waves reflects of a mirror and circular polarization of two waves gets reversed . They travelled in the opposite direction of the magnetic field. Finally ,two waves again reach the quarter wave plate and linear polarisation gets regained.
  • 15. Design of Optical Current Transformer Design is divided into two parts: the electronics part and the optical Design of the electronics part again divided into analog model and digital model The analog model of the electronics part is modelled with complex curve fitting method This method is basically to obtain the transfer function model
  • 16. The transfer function obtained is iterated by the Gauss-Newton method to increase the accuracy The above analog model is converted to the digital model by bilinear transformation The bilinear transformation changes stable continuous time system to stable discrete time system Thus the digital model H(z) is obtained from the analog model H(s)
  • 17. The optics model is developed using Jones Calculus method E0 and Ei represents the output and input energy. In Jones calculus method polarised light is represented by a corresponding Jones Vector And the optical element is represented by a corresponding Jones Matrix
  • 18. APPLICATIONS The MOCT is designed to operate in a transparent manner with modern electronic meters and digital relays, which have been adopted for a low energy analog signal interface. Makes the output signal insensitive to shock & vibration. Most suited for outdoor type applications. E.g. substations Accurate measurement of fault currents.
  • 19. ADVANTAGES No risks of fires & explosions. High immunity to Electromagnetic interferences. Wide frequency response. Larger Dynamic Range. Low voltage outputs-compatible with the inputs of digital to analog converters. No need to use metallic wires to transfer the signal and so simpler insulation structure than conventional current transformer.
  • 20. OCT analog output may have significant white noise , but the white noise does not affect the accuracy or protection performance. Temperature up to 500c do not adversely affect the performance of the OCT. No requirement for oil or gas insulation system , environmentally safe. No magnetic core ferroresonance or saturation limits. Total isolation from surges for microprocessor based meters and relays.
  • 21. CONCLUSION A new type of current transducer is introduced known as magneto optical current transducer. This magneto optical current transducer eliminates many of the drawbacks of the conventional current transformers. By applying Faraday’s principle this transducer provides an easier and more accurate way of current measurements. This MOCT is widely used in power systems and substations nowadays.