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Sequential connection and phase control of a high-current rectifier optimized for copper electrowinning applications

机译:专为铜电解积压应用而优化的大电流整流器的顺序连接和相位控制

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This paper proposes an optimized sequential control technique for copper electrowinning high-current rectifiers. The converter comprises two series-connected six-pulse double-wye rectifiers, a step-down transformer, and a tuned input filter. The six-pulse rectifiers are fed from delta and polygon primary windings with different turns ratio and phase shifted by 5/spl deg/. Under the proposed control scheme, one rectifier is kept at nominal output voltage, and the other one is phase controlled to control the load's current. The proposed strategy greatly improves the rectifier's performance, reducing its reactive power maximum demand by 62% compared to conventional rectifiers and, therefore, reduces the input filters power rating also by 62%. This is accomplished while keeping the input power factor above 0.95 throughout the whole operating range. Further, the converter's reactive power consumption presents a low varying characteristic, allowing it to use a fixed filter, even when operating from a power system not capable of withstanding large reactive power variations. Finally, it presents a harmonic current distortion comparable to conventional 12-pulse high-current rectifiers. This paper presents the design and optimization procedure of the rectifying system. A 2.5 kVA laboratory prototype was used to validate the converter model, later employed in evaluating the converter operating in a 10.5 MVA copper electrowinning facility. The results obtained confirm the advantages of the proposed converter and its control strategy.
机译:本文提出了一种针对铜电解积大电流整流器的优化顺序控制技术。该转换器包括两个串联的六脉冲双星形整流器,一个降压变压器和一个调谐输入滤波器。六脉冲整流器由具有不同匝数比且相移5 / spl deg /的三角形和多边形初级绕组供电。在提出的控制方案下,一个整流器保持在标称输出电压,另一个整流器通过相位控制来控制负载电流。所提出的策略大大提高了整流器的性能,与常规整流器相比,将其最大无功功率需求降低了62%,因此,输入滤波器的额定功率也降低了62%。这是在整个工作范围内将输入功率因数保持在0.95以上的同时完成的。此外,转换器的无功功率消耗具有低变化特性,即使使用无法承受较大无功功率变化的电力系统运行时,也可以使用固定滤波器。最后,它呈现出的谐波电流失真可与传统的12脉冲大电流整流器相提并论。本文介绍了整流系统的设计和优化程序。使用2.5 kVA实验室原型验证转换器模型,随后用于评估在10.5 MVA铜电解沉积设备中运行的转换器。获得的结果证实了所提出的转换器的优点及其控制策略。

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