A ower system is operating at 1000Mw, 132kV, 50Hz, with 0.8 p.f. laging in parallel with another line at 750OMW, 132kV, 50Hz with 0.707 p.f. lagging. Both are interconnected at the station and when the compensating device is on, the overall power factor is improved to 0.9 lagging. Suggest suitable capacitors, shunt and series. Individual loads and combined load are to improve power factor to 0.9 in all cases.
A ower system is operating at 1000Mw, 132kV, 50Hz, with 0.8 p.f. laging in parallel with another line at 750OMW, 132kV, 50Hz with 0.707 p.f. lagging. Both are interconnected at the station and when the compensating device is on, the overall power factor is improved to 0.9 lagging. Suggest suitable capacitors, shunt and series. Individual loads and combined load are to improve power factor to 0.9 in all cases.
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 2.26P: A small manufacturing plant is located 2 km down a transmission line, which has a series reactance...
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A ower system is operating at 1000Mw, 132kV, 50Hz, with 0.8 p.f. laging in parallel
with another line at 750OMW, 132kV, 50Hz with 0.707 p.f. lagging. Both are interconnected
at the station and when the compensating device is on, the overall power factor is
improved to 0.9 lagging. Suggest suitable capacitors, shunt and series. Individual loads
and combined load are to improve power factor to 0.9 in all cases.
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