Electrical Power Engineering-Case Study • Consider a power station that delivers a source with the voltage V_{s} = 275kV and current, I_{S} of 1200 Ampere at 60 Hz to a city that is 420 km away from the power station. • A transformer located 210 km away from the station was proposed to maintain the voltage at 220 kV as the minimum voltage delivered to the city, with a peak current, I_{R} of 1000 ampere. Requirements 1. Design this above system taking into consideration the following: a) Transmission line characteristics including efficiency and voltage regulation. Set up specifications for the transmission line interms of conductors (resistance, inductance, and capacitance): insulators: towers: etc. You may use tables for ACSR conductor and tables for towers from the textbook for the above reason. b) Substation/transformer turns ratio, configuration, and other specifications. c) Provide appropriate drawings.
Electrical Power Engineering-Case Study
• Consider a power station that delivers a source with the voltage V_{s} = 275kV and current, I_{S} of 1200 Ampere at 60 Hz to a city that is 420 km away from the power station.
• A transformer located 210 km away from the station was proposed to maintain the voltage at 220 kV as the minimum voltage delivered to the city, with a peak current, I_{R} of 1000 ampere.
Requirements
1. Design this above system taking into consideration the following:
a) Transmission line characteristics including efficiency and voltage regulation. Set up specifications for the transmission line interms of conductors (resistance, inductance, and capacitance): insulators: towers: etc. You may use tables for ACSR conductor and tables for towers from the textbook for the above reason.
b) Substation/transformer turns ratio, configuration, and other specifications.
c) Provide appropriate drawings.
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