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Analysis of Harmonic Cancellation Performance of a Shunt Phase-Shift Transformer Rectifier

机译:分流相移变压器整流器谐波取消性能分析

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A 12-pulse rectifier has been widely used for harmonic mitigation in a large-scale power system. Recently, a shunt phase-shift transformer rectifier was proposed and already has been utilized in a marine transportation. For a power system equipped with multiple generators, the shunt phase-shift transformer front-end selectively eliminates 5th and 7th harmonic component with more than 75% size reduction over the conventional 12-pulse rectifier. However, a shunt phase-shift transformer rectifier requires additional source inductors to eliminate the undesired harmonics and the relationship between the source impedance and harmonic elimination has not been verified. This paper evaluates the effect of the line inductor on a harmonic cancellation performance of the shunt phase-shift transformer. An equivalent circuit analysis and a mathematical derivation of the shunt phase-shift transformer rectifier are provided and the relationship between the source impedance and harmonic cancellation is mathematically derived. The computer simulation and experimental test results from proto type hardware verify the equivalent model and the mathematical analysis.
机译:12脉冲整流器已广泛用于大型电力系统中的谐波缓解。最近,提出了一种分流移相变压器整流器,并且已经在海洋运输中使用。对于配备多个发电机的电力系统,分流相移变压器前端选择性地消除5 th 7. th 通过传统的12脉冲整流器超过75±%尺寸的谐波分量。然而,分流相移变压器整流器需要额外的源电感器以消除不期望的谐波,并且尚未验证源阻抗和谐波消除之间的关系。本文评估了线路电感对分流相移变压器的谐波消除性能的影响。提供了一种等效的电路分析和分流移相变压器整流器的数学推导,并且在数学地导出了源阻抗和谐波消除之间的关系。 ProTO型硬件的计算机仿真和实验测试结果验证了等效模型和数学分析。

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