Comparative Study of SVC and STATCOM Performance on Reactive Power Compensation in Hot Strip Mill

Ahmed M. Abdelmohsen, Osama M. Hebala, M. Hamad
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Abstract

Flat steel industry is a high energy demanding process, where most of the energy is consumed by upstream process such as Electric Arc Furnace (EAF) and downstream hot strip mill (HSM). The main electrical energy consumers in hot strip mill are the main six (or seven in some other plants) rolling stands and the coiler. However, auxiliary equipment cannot be neglected, as it accounts for approximately 25% of the total electrical energy consumed by the mill. Classical Static VAR Compensators (SVCs) are widely used in conjunction with Hot Strip Mills to regulate PCC bus voltage, improve system power factor and to reduce flickering when connected to (EAF). Production of higher carbon content steel grades, wide, and thin strips requires frequent higher reactive power that may exceed the designed VAR capacity of the currently installed SVC. There are two methods to overcome this challenge, the first method is to upgrade the capacity of the currently installed SVC by adding additional fixed capacitor banks (FC) and increasing the capacity of the Thyristor Controlled Reactor (TCR), the second method is to replace the TCR by a Static Synchronous Compensator (STATCOM). This paper presents the study of both methods and verification of results is carried out using MATLAB/SIMULINK.
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SVC与STATCOM在热轧带钢无功补偿中的性能比较研究
扁钢工业是一个高耗能的过程,其中大部分能源消耗在上游工艺如电弧炉和下游热轧带钢上。热连轧机的主要电能消耗者是主要的六个(或其他一些工厂的七个)轧钢架和卷取机。然而,辅助设备也不能忽视,因为它约占磨机消耗的总电能的25%。经典的静态无功补偿器(SVCs)广泛应用于热连轧机,以调节PCC母线电压,提高系统功率因数,并减少连接(EAF)时的闪烁。高含碳量钢、宽带钢和薄带钢的生产需要频繁增加无功功率,这可能超过当前安装的SVC的设计无功容量。有两种方法可以克服这一挑战,第一种方法是通过增加额外的固定电容器组(FC)和增加晶闸管控制电抗器(TCR)的容量来升级当前安装的SVC的容量,第二种方法是用静态同步补偿器(STATCOM)取代TCR。本文对两种方法进行了研究,并利用MATLAB/SIMULINK对结果进行了验证。
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