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Comparison of thyristor-controlled reactors and voltage-source inverters for compensation of flicker caused by arc furnaces

机译:比较晶闸管控制电抗器和电压源逆变器补偿电弧炉引起的闪烁

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摘要

The objective of this paper is to compare the performance of thyristor-controlled reactors (TCR) and shunt-connected PWM voltage source inverters (PWM-VSI) for compensation of flicker caused by arc furnaces. First of all, arc-furnace principles are presented in order to explain the main characteristics of the problem. Secondly, traditional TCR control are analyzed. An improved measuring procedure is suggested to enhance TCR performance showing that it achieves faster compensation than more traditional methods. Thirdly, PWM-VSI control for flicker compensation is described in detail using Park's transformation. The analysis shows how real and reactive power control can be decoupled. Continuous-time and discrete-time models are considered. Finally, a TCR control and a PWM-VSI control are compared by simulation using data and measurements from a real arc-furnace installation. The analysis considers three different periods of the production cycle: (a) bore-down, (b) fusion, and (c) refining. It is clear from the results obtained that a shunt-connected PWM-VSI is better than a TCR for flicker compensation. This can be easily justified noting that the bandwidth of the PWM-VSI control system is far better than that of the TCR control. However, the control system for a PWM-VSI inverter is more complicated than that of a TCR. Besides, the latter uses a better-established technology than the former.
机译:本文的目的是比较晶闸管控制电抗器(TCR)和并联连接的PWM电压源逆变器(PWM-VSI)的性能,以补偿电弧炉引起的闪烁。首先,提出了电弧炉原理,以解释该问题的主要特征。其次,分析了传统的TCR控制。提出了一种改进的测量程序以增强TCR性能,表明与传统方法相比,它可以实现更快的补偿。第三,使用Park变换详细描述了用于闪烁补偿的PWM-VSI控制。分析显示了有功和无功控制如何解耦。考虑了连续时间和离散时间模型。最后,通过使用真实电弧炉安装中的数据和测量结果进行仿真,比较了TCR控制和PWM-VSI控制。该分析考虑了生产周期的三个不同阶段:(a)钻孔,(b)熔合和(c)精炼。从获得的结果可以明显看出,对于闪烁补偿,并联连接的PWM-VSI优于TCR。注意到PWM-VSI控制系统的带宽远比TCR控制的带宽好,这很容易证明是合理的。但是,PWM-VSI逆变器的控制系统比TCR的控制系统复杂。此外,后者使用的技术要比前者更好。

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