Nonsinusoidal load current effect on the electrical and thermal operating parameters of oil filled power distribution transformers

E. Cazacu, Maria-Cǎtǎlina Petrescu, V. Ioniță, L. Petrescu
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引用次数: 8

Abstract

Most of the in-service power distribution transformers from the industrial electric facilities were designed to operate under pure sinusoidal state conditions. Nevertheless, the majority of the loads from modern electric installations are intrinsically nonlinear and consequently, they generate nonsinusoidal currents. These high-order harmonics (present into the current waveform spectrum) have a negative impact on the transformers thermal and electrical operating parameters and, ultimately, limit the machine loading capability. The paper quantitatively investigates the transformer behavior under distorted current conditions by developing a procedure for evaluating different relevant operating quantities (maximum permissible current, the hottest spot temperature, aging acceleration factor and the machine remaining lifetime). The computation relays on the international standard recommendation and mainly uses the load current harmonic spectrum and the transformer rated data. To reveal the proposed procedure performance, a distribution transformer of 400 kVA from an industrial plasterboard facility is investigated.
非正弦负载电流对充油配电变压器电气和热运行参数的影响
大多数在役的工业电力设施配电变压器都设计成在纯正弦状态下运行。然而,现代电力装置中的大多数负载本质上是非线性的,因此,它们产生非正弦电流。这些高次谐波(存在于电流波形频谱中)对变压器的热和电气操作参数有负面影响,最终限制了机器的负载能力。本文通过开发一种评估不同相关工作量(最大允许电流、最热点温度、老化加速因子和机器剩余寿命)的程序,定量地研究了变压器在畸变电流条件下的行为。计算参照国际标准推荐,主要采用负荷电流谐波谱和变压器额定数据。为了揭示该程序的性能,对某工业石膏板设备的400 kVA配电变压器进行了研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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