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Application of Pulse Doubling in Hexagon-Connected Transformer-Based 20-Pulse AC-DC Converter for Power Quality Improvement

机译:脉冲加倍在基于六边形互感器的20脉冲AC-DC转换器中的应用

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W artykule zaprezentowano technikę podwojenia impulsów w 20-pulsowym przekształtniku ac-dc zastosowanym do sterowania momentem silnika. Uzyskano wygładzenie sygnału i mniejszą zawartość harmonicznych.%This paper presents a pulse doubling technique in a 20-pulse ac-dc converter which supplies direct torque controlled motor drives (DTCIMD's) in order to have better power quality conditions at the point of common coupling. The proposed technique increases the number of rectification pulses without significant changes in the installations and yields in harmonic reduction in both ac and dc sides. The 20-pulse rectified output voltage is accomplished via two paralleled ten-pulse ac-dc converters each of them consisting of five-phase diode bridge rectifier. A transformer is designed to supply the rectifiers. The design procedure of magnetics is in a way such that makes it suitable for retrofit applications where a six-pulse diode bridge rectifier is being utilized. Independent operation of paralleled diode-bridge rectifiers, i.e. dc-ripple re-injection methodology, requires a Zero Sequence Blocking Transformer (ZSBT). Finally, a tapped interphase reactor is connected at the output of ZSBT to double the pulse numbers of output voltage up to 40 pulses. The aforementioned structure improves power quality criteria at ac mains and makes them consistent with the IEEE-519 standard requirements for varying loads. Furthermore, near unity power factor is obtained for a wide range of DTCIMD operation. A comparison is made between 6-pulse, 20-pulse, and proposed converters from view point of power quality indices. Results show that input current total harmonic distortion (THD) is less than 5% for the proposed topology at various loads.
机译:W artykule zaprezentowano技术在Podwojenia冲动中工作,w 20-pulsowymprzekształtnikuAC-DC zastosowanym做空空一时。本文介绍了一种20脉冲AC-DC转换器中的脉冲加倍技术,该技术可提供直接转矩控制的电动机驱动器(DTCIMD),以便在普通耦合点获得更好的电能质量条件。所提出的技术在不显着改变设备的情况下增加了整流脉冲的数量,并且在交流和直流侧均降低了谐波。 20脉冲整流输出电压是通过两个并联的十脉冲AC-DC转换器实现的,每个转换器均由五相二极管桥式整流器组成。变压器设计用于为整流器供电。磁性器件的设计过程应使其适合于使用六脉冲二极管桥式整流器的改装应用。并联二极管-桥式整流器的独立运行,即直流波纹再注入方法,需要零序阻塞变压器(ZSBT)。最后,将抽头式相间电抗器连接到ZSBT的输出,以将输出电压的脉冲数加倍,最多40个脉冲。前述结构改善了交流电源的电能质量标准,并使它们符合IEEE-519标准对各种负载的要求。此外,对于广泛的DTCIMD操作,可获得接近单位的功率因数。从电能质量指标的角度比较了6脉冲,20脉冲和建议的转换器。结果表明,所提出的拓扑在各种负载下的输入电流总谐波失真(THD)小于5%。

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