3 (a) A symmetrical positive sequence of three-phase load is receiving supply from a three- phase electrical power system. Assuming load is star configuration, detail properties of the entire system are shown below. Voltage Supply, VL = 450 V Frequency, Felec. = 50 Hz Resistance, R = 350 per phase Inductance, L = 0.55H per phase (1) Calculate phase voltage, Vpå and phase current, Iph of the system. (ii) Determine total real power (P), total reactive power (Q) and apparent power (S) absorbed by the load. (iii) Obtain power factor, p.f. and propose one (1) practical method to improve poor power factor.

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter3: Power Transformers
Section: Chapter Questions
Problem 3.33P: Consider the three single-phase two-winding transformers shown in Figure 3.37. The high-voltage...
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Q3 (a) A symmetrical positive sequence of three-phase load is receiving supply from a three-
phase electrical power system. Assuming load is star configuration, detail properties of the
entire system are shown below.
Voltage Supply, VL = 450 V
Frequency, Felec. = 50 Hz
Resistance, R = 350 per phase
Inductance, L = 0.55H per phase
(i)
Calculate phase voltage, Vph and phase current, Iph of the system.
(ii) Determine total real power (P), total reactive power (Q) and apparent power (S)
absorbed by the load.
(iii) Obtain power factor, p.f. and propose one (1) practical method to improve poor
power factor.
Transcribed Image Text:Q3 (a) A symmetrical positive sequence of three-phase load is receiving supply from a three- phase electrical power system. Assuming load is star configuration, detail properties of the entire system are shown below. Voltage Supply, VL = 450 V Frequency, Felec. = 50 Hz Resistance, R = 350 per phase Inductance, L = 0.55H per phase (i) Calculate phase voltage, Vph and phase current, Iph of the system. (ii) Determine total real power (P), total reactive power (Q) and apparent power (S) absorbed by the load. (iii) Obtain power factor, p.f. and propose one (1) practical method to improve poor power factor.
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