Model-Based Thermal Stress and Lifetime Estimation of DFIG Wind Power Converter

Energies Pub Date : 2024-07-13 DOI:10.3390/en17143451
Xinming Yu, Francesco Iannuzzo, Dao Zhou
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Abstract

Abstract: Turbine systems equipped with doubly fed induction generation (DFIG) are becoming increasingly vital in wind power generation, with the reliability of the devices serving as a pillar in the industrial sector. Thermal stress and lifetime assessment are fundamental indicators in this regard. This paper primarily addresses the thermal stress and lifespan of power semiconductor devices utilized in a DFIG grid-side converter (GSC) and rotor-side converter (RSC). PLECS (Piecewise Linear Electrical Circuit Simulation) is employed to validate the electrical and thermal stress of the power devices. Additionally, Ansys Icepak, a finite element analysis (FEA) software, is utilized to confirm temperature fluctuations under various operations. The power consumption and junction temperature of the power devices in the GSC and RSC of a 2 MW DFIG are compared. It is evident that the most stressed power semiconductor is the IGBT for the GSC with a temperature swing of 3.4 °C, while the diode in the RSC is the most stressed with a temperature swing of 10.1 °C. This paper also presents a lifetime model to estimate the lifespan of the power device based on the annual wind profile. By considering the annual mission profile, we observe that the lifetime of the back-to-back power converter is limited by the diode of the RSC, whose B10 lifetime is calculated at 15 years.
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基于模型的 DFIG 风力变流器热应力和寿命估计
摘要:配备双馈异步发电机(DFIG)的涡轮机系统在风力发电中越来越重要,其可靠性是工业领域的支柱。热应力和寿命评估是这方面的基本指标。本文主要探讨了用于 DFIG 电网侧变流器(GSC)和转子侧变流器(RSC)的功率半导体器件的热应力和寿命。采用 PLECS(片式线性电路仿真)来验证功率器件的电应力和热应力。此外,还利用有限元分析 (FEA) 软件 Ansys Icepak 来确认各种操作下的温度波动。比较了 2 兆瓦 DFIG 的 GSC 和 RSC 功率器件的功耗和结温。结果表明,受压最大的功率半导体是 GSC 中的 IGBT,温度波动为 3.4 °C,而 RSC 中的二极管受压最大,温度波动为 10.1 °C。本文还提出了一个寿命模型,用于根据年风速曲线估算功率器件的寿命。通过考虑每年的任务概况,我们发现背靠背电源转换器的寿命受限于 RSC 的二极管,其 B10 寿命计算为 15 年。
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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