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A comparison between SVC and STATCOM in flicker mitigation of electric arc furnace using practical recorded data

机译:使用实际记录数据比较SVC和STATCOM在缓解电弧炉闪烁方面的比较

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摘要

Electric arc furnace (EAF) is one of the largest loads in electric power systems. It is highly time varying and nonlinear. Its reactive power variations cause voltage fluctuations in nearby system which is known as flicker. On the other hand the nonlinear voltage-current characteristic causes strong voltage and current harmonics in EAF. To this end Flexible AC Transmission Systems (FACTS) technologies are used to mitigate the flicker and harmonics caused by EAF. The mostly used FACTS device in EAFss is Static VAr compensator (SVC) which can reduce the flicker and harmonics to some levels. Delays relevant to reactive power measurement and thyristor ignition reduce compensation capabilities of SVC. In order to prevent these delays, one can use faster compensation devices. Static Synchronous Compensator (STATCOM) may be considered as a high performance candidate for this purpose due to its fast and flexible response. In this article the performance of STATCOM is compared to SVC in EAFs plants. For this purpose the system is simulated with SVC and STATCOM in PSCAD/EMTDC using the practical EAF data records. Data records are the instantaneous EAF voltage and current recorded from EAFs in Mobarakeh steel company in Esfahan/Iran.
机译:电弧炉(EAF)是电力系统中最大的负载之一。这是高度时变和非线性的。它的无功功率变化会导致附近系统的电压波动,这就是所谓的闪烁。另一方面,非线性电压-电流特性会在EAF中引起强烈的电压和电流谐波。为此,采用了灵活的交流传输系统(FACTS)技术来减轻由电弧炉引起的闪烁和谐波。 EAFss中最常用的FACTS设备是静态VAr补偿器(SVC),它可以将闪烁和谐波降低到一定水平。与无功功率测量和晶闸管点火相关的延迟会降低SVC的补偿能力。为了防止这些延迟,可以使用更快的补偿设备。静态同步补偿器(STATCOM)因其快速灵活的响应而被认为是高性能的候选者。在本文中,将STATCOM的性能与EAF工厂中的SVC进行了比较。为此,使用实际的EAF数据记录在PSCAD / EMTDC中使用SVC和STATCOM对系统进行仿真。数据记录是从位于伊朗伊斯法罕的Mobarakeh钢铁公司的电弧炉记录的瞬时电弧炉电压和电流。

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