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首页> 外文期刊>IEEE Transactions on Industry Applications >Analysis of a Shunt Wye–Delta Transformer for Multi-Generator Harmonic Elimination Under Non-Ideal Phase-Shift Conditions
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Analysis of a Shunt Wye–Delta Transformer for Multi-Generator Harmonic Elimination Under Non-Ideal Phase-Shift Conditions

机译:非理想相位换档条件下的多发电机谐波消除分流Wye-Delta变压器分析

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摘要

A 12-pulse converter has been commonly used for a large-scale power generating system. The arrangement of a delta-delta (Delta-Delta) and a delta-wye (Delta-Y) phase-shift transformer pair in series with the voltage source eliminates undesirable harmonics from nonlinear loads. Recently, a novel front-end for a multi-generator power system was proposed, which utilizes a single Y-Delta transformer to shunt between the two 30 degrees phase-shifted generator outputs and results in the comparable harmonic elimination performance to the conventional 12-pulse rectifier. The shunt-type Y-Delta transformer front-end achieves more than 75% transformer size reduction, making it extremely attractive to large-scale industrial and shipboard applications. However, the exact 30 degrees phase shift between the two rotating generators can drift in a practical system, especially under dynamic conditions. The harmonic performance under the non-ideal 30 degrees phase-shift condition can deteriorate with the Y-Delta shunt-type front-end. To understand the impact of non-ideal phase-shifted generator sources, this paper derives the mathematical models through the use of an equivalent circuit, a square-wave analysis, and the phasor representation to show the harmonic cancellation principle and verifies the results with the computer simulation.
机译:12脉冲转换器通常用于大型发电系统。 Delta-Delta(Delta-Delta)的布置和达到电压源串联的Δ-yem(Delta-Y)相移变压器对消除了来自非线性负载的不期望的谐波。最近,提出了一种用于多发电机电力系统的新型前端,其利用单个Y-DELTA变压器在两个30度相移发电机输出之间分流并导致传统12-的相当谐波消除性能。脉冲整流器。分流式Y-DELTA变压器前端达到超过75%的变压器尺寸减少,使其对大型工业和船上应用非常有吸引力。然而,两个旋转发生器之间的精确30度相位偏移可以在实际系统中漂移,尤其是在动态条件下。在非理想30度相移条件下的谐波性能可以与Y-Delta分流式前端劣化。要了解非理想相移发电机源的影响,本文通过使用等效电路,方波分析和量量表示来衍生数学模型,以显示谐波取消原理并验证结果计算机模拟。

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