CHAPTER 5: SETTINGS
SYSTEM SETUP
T35 TRANSFORMER PROTECTION SYSTEM – INSTRUCTION MANUAL
5-157
5
5.5.4.8 Differential and restraint current calculations
Differential and restraint currents are calculated as follows:
Id
A
= I
A
c
[1] + I
A
c
[2] + ... + I
A
c
[w
total
]
Eq. 5-24
Id
B
= I
B
c
[1] + I
B
c
[2] + ... + I
B
c
[w
total
]
Eq. 5-25
Id
C
= I
C
c
[1] + I
C
c
[2] + ... + I
C
c
[w
total
]
Eq. 5-26
Ir
A
= max (|I
A
c
[1]|, |I
A
c
[2]|, ... , I
A
c
[w
total
])
Eq. 5-27
Ir
B
= max (|I
B
c
[1]|, |I
B
c
[2]|, ... , I
B
c
[w
total
])
Eq. 5-28
Ir
C
= max (|I
C
c
[1]|, |I
C
c
[2]|, ... , I
C
c
[w
total
])
Eq. 5-29
where
Id
A
, Id
B
, and Id
C
are the phase differential currents
Ir
A
, Ir
B
, and Ir
c
are the phase restraint currents
5.5.4.9 Transformer windings between two breakers
When the relay is to protect a transformer with windings connected between two breakers, such as in a ring bus or
breaker-and-a-half station configuration, one of the methods for configuring currents into the relay presented as follows
should be used (see the Breaker-and-a-Half Scheme diagram in the Overview section of this chapter).
For this example, assumed that winding 1 is connected between two breakers and winding 2 is connected to a single
breaker. The CTs associated with winding 1 are CTX, at 1200/5 A and CTY, at 1000/5 A. CTX is connected to current input
channels 1 through 3 inclusive and CTY is connected to current input channels 5 through 7 inclusive on a type 8H CT/VT
module in relay slot “F.” The CT2 on winding 2 is 5000/5 A and is connected to current input channels 1 through 4 inclusive
on a type 8F CT/VT module in relay slot “M.”
Setup method A (preferred)
This approach is preferred because it provides increased sensitivity as the current from each individual set of CTs
participates directly in the calculation of CT ratio mismatch, phase compensation, zero-sequence removal (if required) and
the differential restraint current. The concept used in this approach is to consider that each set of CTs connected to
winding 1 represents a connection to an individual winding. For our example, consider the two-winding transformer to be
a three-winding transformer.
1.
Enter the settings for each set of CTs in the
SYSTEM SETUP
AC INPUTS
CURRENT BANK
settings menu.
PHASE CT F1 PRIMARY: “1200 A”
PHASE CT F1 SECONDARY: “5 A”
GROUND CT F1 PRIMARY: “1 A” (default value)
GROUND CT F1 SECONDARY: “1 A” (default value)
PHASE CT F5 PRIMARY: “1000 A”
PHASE CT F5 SECONDARY: “5 A”
GROUND CT F5 PRIMARY: “1 A” (default value)
GROUND CT F5 SECONDARY: “1 A” (default value)
PHASE CT M1 PRIMARY: “5000 A”
PHASE CT M1 SECONDARY: “5 A”
GROUND CT M5 PRIMARY: “5000 A”
GROUND CT M5 SECONDARY: “5 A”
2.
Configure source n (source 1 for this example) as the current from CTX in Winding 1 in the
SYSTEM SETUP
SIGNAL
SOURCES
SOURCE 1(6)
settings menu.
SOURCE 1 NAME: “WDG 1X”
SOURCE 1 PHASE CT: “F1”
SOURCE 1 GROUND CT: “None”
SOURCE 1 PHASE VT: “None”
SOURCE 1 AUX VT: “None”
Содержание T35
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Страница 14: ...1 4 T35 TRANSFORMER PROTECTION SYSTEM INSTRUCTION MANUAL FOR FURTHER ASSISTANCE CHAPTER 1 INTRODUCTION 1 ...
Страница 202: ...4 88 T35 TRANSFORMER PROTECTION SYSTEM INSTRUCTION MANUAL FLEXLOGIC DESIGN USING ENGINEER CHAPTER 4 INTERFACES 4 ...
Страница 472: ...5 270 T35 TRANSFORMER PROTECTION SYSTEM INSTRUCTION MANUAL TESTING CHAPTER 5 SETTINGS 5 ...
Страница 500: ...6 28 T35 TRANSFORMER PROTECTION SYSTEM INSTRUCTION MANUAL PRODUCT INFORMATION CHAPTER 6 ACTUAL VALUES 6 ...
Страница 514: ...7 14 T35 TRANSFORMER PROTECTION SYSTEM INSTRUCTION MANUAL TARGETS MENU CHAPTER 7 COMMANDS AND TARGETS 7 ...
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Страница 588: ...C 6 T35 TRANSFORMER PROTECTION SYSTEM INSTRUCTION MANUAL COMMAND LINE INTERFACE APPENDIX C COMMAND LINE INTERFACE C ...
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