b) In a balanced three-phase system, the source has an abc sequence, is Y-connected, and Van = 120 220° V (rms). The source feeds two loads, both of which are Y-connected. The impedance of load 1 is 8 + j6 QØ. The complex power for the a-phase of load 2 is 600 236° VA. i. Find the total current flowing through load 1 and 2 for the a-phase. Find the total complex power supplied by the source. ii.

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
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Chapter2: Fundamentals
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b) In a balanced three-phase system, the source has an abc sequence, is Y-connected, and
Van = 120 220° V (rms). The source feeds two loads, both of which are Y-connected.
The impedance of load 1 is 8 + j6 VØ. The complex power for the a-phase of load 2 is
600 236° VA.
i.
Find the total current flowing through load 1 and 2 for the a-phase.
ii.
Find the total complex power supplied by the source.
Transcribed Image Text:b) In a balanced three-phase system, the source has an abc sequence, is Y-connected, and Van = 120 220° V (rms). The source feeds two loads, both of which are Y-connected. The impedance of load 1 is 8 + j6 VØ. The complex power for the a-phase of load 2 is 600 236° VA. i. Find the total current flowing through load 1 and 2 for the a-phase. ii. Find the total complex power supplied by the source.
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