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is no risk of trip during the normal, non-faulted operation of the generator. If
Beta
is set high, this limits the portion of the stator winding covered by the protection.
In most cases, the default setting “3.00” gives an acceptable sensitivity for an earth
fault near the neutral point of the stator winding. However, to assure the best
performance, measurements during the normal operation of the generator are to be
made during commissioning.
1. The value of the
Beta setting must be set to “1.00”.
2. Loading of the generator is done at 5 to 10 different load points and the third
harmonic differential and bias voltage are measured. Both quantities can be
obtained from the Monitored data view of the function.
3. A graph indicating differential and bias voltages as a functions of the load on
the generator must be plotted.
4. Based on the graph, such value of the
Beta setting must be selected that the
bias voltage, even in the worst condition, is at least 30% to 50% higher than the
differential voltage.
The angle between the third harmonic voltage phasors Ū
3H_T
and Ū
3H_N
is 150°,
and with the
Beta setting value "1.0", protection guarantees a stability margin of
25%. This requires the value of
Beta to be increased so as to increase the stability of
protection. The recommended value of the
Beta setting is at least “1.2”.
Figure 316: Typical example of variation of the bias voltage and differential voltage
with a change in the active generated load (the angle between the third harmonic
terminal and neutral voltage is 150°)
Calculating CB Open factor
One of the factors, though not major, governing the magnitude of the generated
third harmonic voltage is the generator terminal capacitance. If there is no
generator breaker, the capacitive coupling to earth is the same under all operating
1MRS759142 F
Protection functions
REX640
Technical Manual
549
Содержание RELION REX640
Страница 1: ... RELION PROTECTION AND CONTROL REX640 Technical Manual ...
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Страница 3: ...Document ID 1MRS759142 Issued 2023 02 07 Revision F Copyright 2023 ABB All rights reserved ...
Страница 167: ...Figure 62 Signal outputs in power supply module 1MRS759142 F Basic functions REX640 Technical Manual 167 ...
Страница 184: ...Figure 84 mA channels working as mA outputs Basic functions 1MRS759142 F 184 REX640 Technical Manual ...
Страница 1868: ...Figure 989 ANSI extremely inverse time characteristics General function block features 1MRS759142 F 1868 REX640 Technical Manual ...
Страница 1869: ...Figure 990 ANSI very inverse time characteristics 1MRS759142 F General function block features REX640 Technical Manual 1869 ...
Страница 1870: ...Figure 991 ANSI normal inverse time characteristics General function block features 1MRS759142 F 1870 REX640 Technical Manual ...
Страница 1874: ...Figure 995 ANSI long time inverse time characteristics General function block features 1MRS759142 F 1874 REX640 Technical Manual ...
Страница 1875: ...Figure 996 IEC normal inverse time characteristics 1MRS759142 F General function block features REX640 Technical Manual 1875 ...
Страница 1876: ...Figure 997 IEC very inverse time characteristics General function block features 1MRS759142 F 1876 REX640 Technical Manual ...
Страница 1877: ...Figure 998 IEC inverse time characteristics 1MRS759142 F General function block features REX640 Technical Manual 1877 ...
Страница 1878: ...Figure 999 IEC extremely inverse time characteristics General function block features 1MRS759142 F 1878 REX640 Technical Manual ...
Страница 1882: ...Figure 1002 RI type inverse time characteristics General function block features 1MRS759142 F 1882 REX640 Technical Manual ...
Страница 1885: ...Figure 1004 UK rectifier inverse time characteristic 1MRS759142 F General function block features REX640 Technical Manual 1885 ...
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