Chapter 9: Q41P (page 585)
Repeat Problem 9.38 for a bolted double line-to-ground fault at bus 1.
Short Answer
The fault current and voltages are and respectively.
Chapter 9: Q41P (page 585)
Repeat Problem 9.38 for a bolted double line-to-ground fault at bus 1.
The fault current and voltages are and respectively.
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Get started for freeA single-line diagram of a four-bus system is shown in Figure 9.27. Equipment ratings and per-unit reactances are given as follows.
Machine and:
Transformers and:
On a base of 100 MVA and 345 kV in the zone of the transmission line, the series reactances of the transmission line areand . (a) Draw each of the sequence networks and determine the bus impedance matrix for each of them. (b) Assume the system to be operating at nominal system voltage without prefault currents when a bolted line-to-line fault occurs at bus 3. Compute the fault current, the line-to-line voltages at the faulted bus, and the line-to-line voltages at the terminals of machine 2. (c) Assume the system to be operating at nominal system voltage without prefault currents, when a bolted double line-to ground fault occurs at the terminals of machine 2. Compute the fault current and the line-to-line voltages at the faulted bus.
The single-line diagram of a three-phase power system is shown in Figure 9.17. Equipment ratings are given as follows:
Synchronous generators:
Transformers:
Transmission line:
The inductor connected to Generator 3 neutral has a reactance of using generator 3 ratings as a base. Draw the zero-, positive-, and negative-sequence reactance diagrams using a base in the zone of line 1–2. Neglect the transformer phase shifts.
Compute the 3 x 3 per-unit zero-, positive-, and negative-sequence bus impedance matrices for the power system given in Problem 4(a). Use a base of 1000 MVA and 500 kV in the zone of line 1-2.
For a double line-to-ground fault through a fault impedance , the sequence networks are to be connected ________, at the fault terminal; additionally, ________ is to be included in series with the zero-sequence network.
In order of frequency of occurrence of short-circuit faults in three-phase power systems, list those: ________, ________, ________, ________.
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