Setting the be1-87t, Method, Procedure one – Basler Electric BE1-87T User Manual

Page 75: Tap and phase shift settings, Setting the be1-87t -33, Method -33, Procedure one -33

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9171300990 Rev V

BE1-87T Installation

4-33

Setting the BE1-87T

The following setting procedures include two examples:

1. Using the MVA rating of the highest-rated winding for all the other windings when making the

calculations.

2. Using the top kVA rating of the transformer.

Each procedure can be used as a means to understand the principles involved, and by replacing the

variables of the example, can become a procedure of general application. Variable abbreviations and

definitions are provided in Table 4-1, List of Variables.

Method

Both procedures determine:

1. The matching tap and slope settings required to implement the restrained function, and
2. The unrestrained pickup setting as a multiple of the BE1-87T tap setting (i.e., the

INPUT

switches).

The matching tap procedure is conventional, providing tap values proportional to the normal currents as

seen by the relay. An exception occurs with multiple-winding banks where zero-balance current is

assumed in each pair of windings, successively.

NOTE

The dc component of the input current is effectively blocked by the gapped

cores of the input CTs. Therefore, for offset fault currents or magnetic inrush,

the dc component of the waveform can be ignored in fault current calculations.

Procedure One

Refer to Figure 4-35 for a one-line drawing of this example. Refer to Figure 4-34 for the three-line

representation of this transformer.

Step 1. Determine the primary current (I

P

) of each winding:

Tap and Phase Shift Settings

Use the MVA rating of the highest-rated winding for all the other windings when making the

calculations. (This procedure assures that the taps follow the voltage ratios. Refer to Appendix

A, Setting Note 1.)

HIGH

TERTIARY

LOW

I

I

P

P

=

=

250,000

13.2 3

10,935

Step 2. Determine the CT secondary current (I

S

)of each winding:

HIGH

TERTIARY

LOW

IP =

(MVA rating of transformer) (X 1,000)

V

3

LINE - LINE

(

) ( )

IP
IP

=

=

250,000

345

418

3

I

I

P

P

=

=

250,000

138 3

1,046

I

I

S

P

=

CT ratio

I
I

S

S

=
=

418
120

349

.

I
I

S

S

=
=

10 935

600

1822

,

.

I
I

S

S

=
=

1046

240

4 36

.

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