Transformer Differential Protection Calculations P642 Relay

Video Tutorials, Courses

Transformer Differential Protection Calculations P642 Relay
Free Download Transformer Differential Protection Calculations P642 Relay
Published 2/2023
Created by Elite Engineering
MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch
Genre: eLearning | Language: English | Duration: 12 Lectures ( 1h 10m ) | Size: 434 MB



100MVA 132/33kV Transformer
What you'll learn
Understand Data Required for calculations
Calculate Full Load HV and LV
What is percentage impedance and it's relation with the fault MVA
How to calculate short circuit MVA, short circuit current at HV & LV sides
Effect of percentage impedance over fault current
Tap position impact over HV current and differential current
Pick up current calculations.
Differential current due to tap changer
Ratio and phase angle compensation
Slope 1 & Slope 2 Calculations
Harmonics blocking calculations.
High set differential setting calculations
Through fault stability calculations
Requirements
Basic understanding of protection
Description
Dear All,Differential protection is the main protection for any transformer.  Differential protection is also called as unit protection scheme, it mean that it will operate in case of in zone fault and at through faults differential protection should not operate. A practical transformers and CTs pose some challenge to Differential Protection. They are as follows:The primary of transformer will carry no load current even when the secondary is open circuited. This will lead to differential current on which the protection scheme should not operate.It is not possible to exactly match the CT ratio as per equation. This would also lead to differential currents under healthy conditions.If the transformer is used with an off nominal tap, then differential currents will arise as the CT ratio calculated for a particular Tap (Nominal Tap) will be different for different Tap, even under healthy conditions.To prevent the Differential Protection scheme from picking up under such conditions, a Percentage Differential Protection scheme is used. It improves security at the cost of sensitivity.In Percentage Differential Protection, we provide a slope feature to the Differential Protection Relay. In modern Numerical Differential protection Relay two slopes are provided.In this course, we will perform the setting calculation of 100MVA transformer with following dаta:Transformer rating: 100 MVAHV side voltage:  132 kVLV side voltage: 33 kVVector group: YNd1Impedance: 12.5 %HV side current: 437.4 ALV side current : 1749.5 ATap range :  ±10%Primary CT ratio :  500/1 ASecondary CT ratio : 1800/1 AFurther we will calculate: Full load amperesShort circuit MVAShort circuit current at HV & LV sidesrelationship between short circuit MVA and percentage impedance of transformerMagnitude and phase angle error and its compensationCT error and its compensationOperating and restraining currentsPickup current calculationsSlope 1 & 2 calculationsHarmonics blocking calculationsThrough fault stability calculationsBest Regards
Who this course is for
Any one eager to learn
Homepage

https://www.udemy.com/course/transformer-differential-protection-calculations-p642-relay/


Download


Rapidgator
lmesg.Transformer.Differential.Protection.Calculations.P642.Relay.rar.html
Uploadgig
lmesg.Transformer.Differential.Protection.Calculations.P642.Relay.rar


Please Help Me Click Connect Icon Below Here and Share News to Social Network | Thanks you !