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Copyright © SEL 2016 Applying SEL Differential Relays Introduction to Transformer Differential Protection
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Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

May 09, 2018

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Page 1: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Copyright © SEL 2016

Applying SEL Differential RelaysIntroduction to Transformer

Differential Protection

Page 2: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

• Explain challenges of transformer differential protection • Understand need for tap, phase, and zero-sequence

compensation and how they work• Understand how transformer differential relays are

made secure for inrush and overexcitation

Transformer DifferentialProtection Presentation Objectives

Page 3: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Differential Protection is Easy in Theory

Kirchhoff’s Current Law (KCL):n

kk 1

I 0

1

2 3

Page 4: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

• Current magnitude mismatch • Phase shift across transformer• Zero-sequence sources• Energization inrush• Overexcitation• Unequal CT performance

Challenges to TransformerDifferential Protection

Page 5: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Differential Protection Principle

Page 6: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Differential Protection Principle

Page 7: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Current Magnitude and Phase Angle Difference Compensation

Page 8: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

ANSI Transformer ConnectionsDABY or Dy1

1 2a b 2 1

b c 2 1

c a 2 1

a

b

c

a

A

Page 9: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

ANSI Transformer ConnectionsYDAC or Yd1

Page 10: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Secondary Currents

SECSEC

Page 11: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Result of Uncompensated Phase Shift

Page 12: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Traditional Compensation

Page 13: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

CTR1 and CTR2 Ideal Relationship

Not always possible with standard CT ratios

2

1 1 2

11 2

2

12 1

2

N 1 1N CTR CTRN CTR CTRN

kVCTR 3 CTRkV

Page 14: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

• EM relays provide limited magnitude compensation• SEL relays provide magnitude and phase-shift

compensation (SEL-387 considers not only ANSI / IEEE standard connections, but all possible connections)

Compensation With Relays

Page 15: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

• Current magnitude is transformed (transformer is constant KVA device) kVH • Ihigh-side = kVL • Ilow-side

Ihigh-side ≠ Ilow-side

• Load tap changer dynamically changes transformation ratio

Current Magnitude Mismatch

Page 16: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Tap Compensation

WDG

MVA •1000 • CTAP3 • kV • CTR

where:C = 1 for wye-connected CTsC = for delta-connected CTs3

Page 17: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Wye Connection Compensation

1TAP1

1TAP1

1TAP1

IAW1I1W1CTAP1

IBW1I2W1CTAP1

ICW1I3W1CTAP1

Page 18: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

DAB Connection Compensation

1TAP2

1TAP2

1TAP2

1 (IAW2 IBW2)I1W2C •TAP2 3

1 (IBW2 ICW2)I2W2C •TAP2 3

1 (ICW2 IAW2)I3W2C •TAP2 3

Page 19: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

DAC Connection Compensation

1TAP2

1TAP2

1TAP2

1 (IAW2 ICW2)I1W2C •TAP2 3

1 (IBW2 IAW2)I2W2C •TAP2 3

1 (ICW2 IBW2)I3W2C •TAP2 3

Page 20: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Compensation for Zero-Sequence Currents

Page 21: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Why Eliminate Zero-Sequence Current?

Page 22: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Removal Via Delta Connection

Page 23: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Restrained Differential Element

Page 24: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

CT saturation and CT ratio error

Differential Protection PrincipleUnequal CT Performance

Page 25: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Percentage Differential Protection Principle

1 2

1 2IOP I I

1 2IRT 0.5 • I I

Page 26: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Differential Element Operate and Restraint Quantities

1 2I I

1 2I I2

1TAP1

1TAP2

Page 27: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Percentage Restraint Differential Characteristic

Page 28: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Percentage Restraint Differential Characteristic

Page 29: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Transformer Energization

Page 30: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

C-Phase Inrush Current

Page 31: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Inrush Current

Cycles

Cycles1 2 3 4 5 6 7

1 2 3 4 5 6 7Prim

ary

Cur

rent

(A)

0

50

100P

erce

ntag

e of

Fund

amen

tal

0

20

40

60

80

Fundamental Frequency Magnitude

Second-Harmonic Magnitude

Second-Harmonic Percentage

Second-Harmonic Block Threshold

Page 32: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

• Harmonic blocking• Harmonic restraint• DC blocking

Discriminating Internal FaultsVersus Inrush Conditions

Page 33: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

DC Blocking

MinMax

Page 34: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

DC Blocking

+

+

+

Page 35: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

DC Blocking

+ +

+

Page 36: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Inrush Conditions (Blocking)

Page 37: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Inrush Conditions (Restraint)

Page 38: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Unrestrained Differential Element

Page 39: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

• Element instantaneously trips on magnitude of differential current No percentage restraint

No harmonic block

• CT saturation includes harmonics

Unrestrained Element

Page 40: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Transformer Overexcitation

Page 41: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Excitation Current From Testing150 Percent Overvoltage

Prim

ary

Cur

rent

(A)

Cycles

0.5 1 1.5 2 2.5 3–60

–40

–20

0

20

40

60

0

Page 42: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Fifth-Harmonic Content in Excitation Current

Frequency Component

Magnitude (primary A) Percent of Nominal

Fundamental 22.5 52.0

3rd 11.1 26.0

5th 4.9 11.0

7th 1.8 4.0

Page 43: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Excitation Current Harmonics

0

10

20

30

40

50

60

70

80

100 110 120 130 140 150 160

Page 44: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Application Considerations

Page 45: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Paralleling CTs on Restraint Input

Page 46: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Paralleling CTs on Restraint Input

Page 47: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Paralleling Transformers Sympathetic Inrush

Page 48: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

• Know that third winding may not be rated at same MVA as main windings

• Set taps on multirestraint relay Work through matching taps in pairs

Be sure to use same MVA base for each tap calculation

Setting Taps for Three-Winding Transformers

Page 49: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Restricted Earth Fault (REF) Protection

Page 50: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Protect Windings Close to Neutral

Page 51: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Protection Basics – Why Use REF Protection?

Page 52: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

• Thermal model • Through-fault monitoring

Prevention Before Protection

Page 53: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

What Causes Transformer Overheating?

Page 54: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

What Does Overheating Do?

Page 55: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Prevention Basics –Control Fan Banks

Ambient Temperature

Top-Oil Temperature

Temperature Data

Cooling Stage Control

Thermal Model

Page 56: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Why Enable Through-Fault Monitoring?

Page 57: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Track Through Faults Transformer Has

Experienced

Page 58: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Thermal Model

Prevention Basics –Enable Through-Fault Monitoring

Page 59: Applying SEL Differential Relays - Peak Measure Differential Protection Presentation Objectives. Differential Protection is Easy in Theory Kirchhoff’s Current Law ... • Set taps

Questions?