DocumentCode :
2603087
Title :
Comparison of the ´Sen´ transformer with the unified power flow controller
Author :
Sen, Kalyan K. ; Sen, Mey Ling
Volume :
4
fYear :
2003
fDate :
13-17 July 2003
Abstract :
The independent control of active and reactive power flow in a transmission line is necessary for the transfer of bulk power along a desired path in the most economical way. A ´Sen´ transformer (ST) uses transformer and tap changers that are traditionally used to build a voltage-regulating transformer (VRT) and a phase angle regulator (PAR). The ST regulates the voltage at a point in the transmission line as a VRT does. Additionally, the ST provides an independent and bidirectional active and reactive power (P and Q) flow control in the transmission line as a voltage-sourced converter (VSC)-based unified power flow controller (UPFC) does. Although both the ST and the PAR use a comparable number of components, the ST provides an area of controllability in the P-Q plane similar to a UPFC, while the PAR provides a linear P-Q characteristic. The technology of transformer and tap changer is proven to be reliable and cost-effective when compared with the emerging technology of VSC. The new ST is adequate to provide independent control of active and reactive power flow in most utility applications.
Keywords :
flexible AC transmission systems; load flow control; on load tap changers; phase control; phase shifters; power convertors; power electronics; power transmission control; power transmission lines; reactive power control; reliability; voltage control; ´Sen´ transformer; FACTS; UPFC; active power flow control; bulk power transfer; cost-effective; linear P-Q characteristic; phase angle regulator; power transmission control; power transmission line; reactive power flow control; tap changer; unified power flow controller; voltage-regulating transformer; voltage-sourced converter; Converters; Load flow; Phase transformers; Power conversion; Power generation economics; Power transformers; Power transmission lines; Reactive power control; Regulators; Voltage control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Engineering Society General Meeting, 2003, IEEE
Print_ISBN :
0-7803-7989-6
Type :
conf
DOI :
10.1109/PES.2003.1271050
Filename :
1271050
Link To Document :
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