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Power Capability Investigation Based on Electrothermal Models of Press-Pack IGBT Three-Level NPC and ANPC VSCs for Multimegawatt Wind Turbines

机译:基于压装式IGBT三级NPC和ANPC VSC的电热模型的多兆瓦级风力发电机功率能力研究

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摘要

Wind turbine power capability is an essential set of data for both wind turbine manufacturers/operators and transmission system operators since the power capability determines whether a wind turbine is able to fulfill transmission system reactive power requirements and how much it is able to provide reactive power support as an ancillary service. For multimegawatt full-scale wind turbines, power capability depends on converter topology and semiconductor switch technology. As power capability limiting factors, switch current, semiconductor junction temperature, and converter output voltage are addressed in this study for the three-level neutral-point-clamped voltage source converter (3L-NPC-VSC) and 3L Active NPC VSC (3L-ANPC-VSC) with press-pack insulated gate bipolar transistors employed as a grid-side converter. In order to investigate these VSCs'' power capabilities under various operating conditions with respect to these limiting factors, a power capability generation algorithm based on the converter electrothermal model is developed. Built considering the VSCs'' operation principles and physical structure, the model is validated by a 2 MV·A single-phase 3L-ANPC-VSC test setup. The power capability investigations regarding a sample grid code''s reactive power requirement show that 3L-ANPC-VSC results in 32% better power capability than 3L-NPC-VSC at the switching frequency of 1050 Hz. Furthermore, 3L-ANPC-VSC with 57% higher switching frequency (1650 Hz) and 33% smaller switching ripple filter can yield close power capability compared to 3L-NPC-VSC with 1050 Hz.
机译:风力发电机功率能力对于风力发电机制造商/运营商和输电系统运营商而言都是必不可少的数据集,因为该功率能力决定了风力发电机是否能够满足输电系统无功功率需求以及能提供多少无功功率支持作为辅助服务。对于兆瓦级全尺寸风力涡轮机,功率能力取决于转换器拓扑和半导体开关技术。作为功​​率能力的限制因素,本研究针对三电平中性点钳位电压源转换器(3L-NPC-VSC)和3L有源NPC VSC(3L- ANPC-VSC),带有压装绝缘栅双极型晶体管,用作电网侧转换器。为了针对这些限制因素研究这些VSC在各种运行条件下的功率能力,开发了一种基于转换器电热模型的功率能力生成算法。该模型是在考虑VSC的工作原理和物理结构的基础上构建的,并通过2 MV·A单相3L-ANPC-VSC测试装置进行了验证。关于样本电网规范的无功功率要求的功率能力研究表明,在1050 Hz的开关频率下,3L-ANPC-VSC的功率能力比3L-NPC-VSC更好32%。此外,与频率为1050 Hz的3L-NPC-VSC相比,具有更高的开关频率(1650 Hz)的3L-ANPC-VSC和具有更低的开关纹波滤波器的33%可以产生接近的功率性能。

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  • 来源
    《Power Electronics, IEEE Transactions on》 |2012年第7期|p.3195-3206|共12页
  • 作者

    Senturk O.S.;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 13:24:01

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