外文翻译---无功功率补偿的最新进展
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1、附录 附录一英文资料 Recent advances in var compensators GZA JOOS . Department of Electrical and Computer Engineering, Concordia University 1445, de Maisonneuve W, Montreal, Canada H3G 1M8 e-mail: gezaece.concordia.ca Abstract. Static var compensators have been, for many years, an essential co mponent in the
2、operation of power transmission systems. They are part of a fam- ily of devices known as Flexible AC Transmission System (FACTS) devices. The advent of large capacity force-commutated semiconductor switches allows many developments in power electronic converters to be applied to the implem- entation
3、 of high power compensators. This paper describes the principles of co- ntrolled reactive power compensation, particularly in the context of power syst- ems. It focuses on active static power converter-based compensators and discu- sses issue related to the power circuit topology and control techniq
4、ues including the impact of Pulse Width Modulation (PWM) techniques. Compensators based on current and voltage source converters and on ac controllers, both in the shunt and series configurations, are covered. Methods to enhance power capacity usin -g multi-level and multi-pulse arrangements are dis
5、cussed. Key words. Reactive compensation; power electronic converters; powers ystems. 1. Introduction Reactive power (var) compensation has long been recognized as an essential fun ction in the operation of power systems. At the distribution level, it is used to i- -mprove the power factor and suppo
6、rt the voltage of large industrial loads, such as line commutatedthyristor drives and electric arc furnaces. Reactive power co- mpensation also plays a crucial role at the transmission level in supporting the l- -ine voltage and stabilizing the system. Rotating synchronous condensers and m- echanica
7、lly-switched capacitor and inductor banks have been replaced in the 19 70s by thyristor-based technologies: in typical installations, a thyristor-contro- lled reactor (TCR) provides variable lagging vars, and fixed or thyristorswitched capacitors (TSC) provide the leading vars. The combination of bo
8、th devices in parallel allows continuous control of vars over a wide range of values, from lea -ding to lagging vars (Gyugyi 1979). A large number of units have been succes -sfully installed and operated for many years. At the same time, the potential of var compensators based on static power conver
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