b) A 208-V three-phase power system consists of an ideal 208-V Y- connected three-phase generator connected through a three phase transmission line to a Y-connected load. The transmission line has an impedance of 0.06 + j0.12 2 per phase, and the load has an impedance of 12+ j9 92 per phase. For this simple power system below; Ven=120-240° Von 120-120° Find; 2² ar 12020⁰ 0.06 0.12 2 ww 0.06 208 V j0.12 2 006 Ω 0.12 Ω W i) The magnitude of the line current IL ii) The power factor of the load 20 Z 2. V Z₂ = 12 +39 52

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
Chapter2: Fundamentals
Section: Chapter Questions
Problem 2.51P: A three-phase line with an impedance of (0.2+j1.0)/ phase feeds three balanced three-phase loads...
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b) A 208-V three-phase power system consists of an ideal 208-V Y-
connected three-phase generator connected through a three phase
transmission line to a Y-connected load. The transmission line has an
impedance of 0.06 + j0.12 2 per phase, and the load has an impedance
of 12 + j9 92 per phase. For this simple power system below;
Ven 120-240⁰
Von 120-120° (~
Find;
Van = 12040°
0,06 Ω
0.06 Ω
ww
208 V
0.06 Ω
0.12 Ω
m
j0.12 Ω
30.12 Ω
i) The magnitude of the line current IL
ii) The power factor of the load
24
Z
20
Z₂ = 12 +39 52
Transcribed Image Text:b) A 208-V three-phase power system consists of an ideal 208-V Y- connected three-phase generator connected through a three phase transmission line to a Y-connected load. The transmission line has an impedance of 0.06 + j0.12 2 per phase, and the load has an impedance of 12 + j9 92 per phase. For this simple power system below; Ven 120-240⁰ Von 120-120° (~ Find; Van = 12040° 0,06 Ω 0.06 Ω ww 208 V 0.06 Ω 0.12 Ω m j0.12 Ω 30.12 Ω i) The magnitude of the line current IL ii) The power factor of the load 24 Z 20 Z₂ = 12 +39 52
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