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Design of microcontroller based Thyristor Controlled three-phase static volt-ampere reactive compensator

机译:基于微控制器的晶闸管控制的三相静态伏安无功补偿器的设计

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To confine on system stability and reliability, the reactive power compensation is the fundamental way for Flexible AC Transmission System (FACTS). The variations of reactive power have an effect on the generating units, lines, circuit breakers, transformers, relays and isolators. Moreover the additional current flow associated with reactive power can be cause to increase losses and excessive voltage sags. Therefore the local Volt-Ampere Reactive (VAR) compensator which is comprised of shunt reactors is used in transmission and distribution system for reactive power compensation. The conventional electro-mechanical reactive power compensator is not suitable for its slow switching action which cannot proportionate with the rapid changing system load. The electronic reactive power compensator uses fast switching action than the conventional relay. The Static VAR Compensator (SVC) is the arrangement of Thyristor Switched Capacitor (TSC) and Thyristor Controlled Reactor (TCR). In this paper, microcontroller based three-phase SVC system is designed using thyristor controlled switch. Microcontroller is used for fast and precise switching of the thyristor which adds a significant feature of this designed SVC.
机译:为了限制系统的稳定性和可靠性,无功功率补偿是柔性交流输电系统(FACTS)的基本方法。无功功率的变化会影响发电机组,线路,断路器,变压器,继电器和隔离器。此外,与无功功率相关的额外电流会导致损耗增加和电压骤降。因此,由分流电抗器组成的本地伏安无功(VAR)补偿器在输配电系统中用于无功功率补偿。传统的机电无功补偿器不适用于其缓慢的开关动作,该动作不能与快速变化的系统负载成比例。电子无功功率补偿器使用的开关动作比常规继电器快。静态无功补偿器(SVC)是晶闸管开关电容器(TSC)和晶闸管控制电抗器(TCR)的布置。本文采用晶闸管控制开关设计了基于单片机的三相SVC系统。微控制器用于晶闸管的快速和精确开关,这增加了此设计SVC的重要功能。

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