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Converter Structure-Based Power Loss and Static Thermal Modeling of The Press-Pack IGBT Three-Level ANPC VSC Applied to Multi-MW Wind Turbines

机译:压装式IGBT三级ANPC VSC应用于多兆瓦级风力发电机组的基于变流器结构的功率损耗和静态热建模

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Wind turbine converters demand high power density due to nacelle space limitation and high reliability due to high maintenance cost. Depending on the converter structure, the converter thermal performance determines the converter power density and reliability. To estimate the converter thermal performance, the converter structure-based power loss and thermal models are developed in this study for the medium-voltage (MV) three-level active neutral-point-clamped voltage source converter (3L-ANPC-VSC) utilizing 4500 V-1800 A press-pack insulated-gate bipolar transistor-diode pairs and interfacing a 6 MW wind turbine to a MV grid. The switching power loss models are built using the experimental switching power loss data acquired via the double-pulse tests conducted on a full-scale 3L-ANPC-VSC prototype. The converter static thermal model is developed based on the double-sided water-cooled press-pack switches. Via a single-phase test setup with two full-scale 3L-ANPC-VSC legs, the developed power loss and thermal models are validated experimentally. Employing the validated models, the 3L-ANPC-VSC's thermal performance is demonstrated on simulation for a 6 MW wind turbine grid interface. Hence, these converter structure-based models developed and validated in this study are proven to be suitable for the converter power density and reliability studies based on converter thermal performance.
机译:由于机舱空间的限制,风力涡轮机转换器要求高功率密度,而由于维护成本高而要求高可靠性。取决于转换器的结构,转换器的热性能决定了转换器的功率密度和可靠性。为了估算转换器的热性能,本研究针对中压(MV)三电平有源中性点钳位电压源转换器(3L-ANPC-VSC),开发了基于转换器结构的功率损耗和热模型4500 V-1800一个压装绝缘栅双极型晶体管-二极管对,并将6兆瓦的风力涡轮机连接到中压电网。开关功率损耗模型是使用通过在全尺寸3L-ANPC-VSC原型上进行的双脉冲测试获得的实验性开关功率损耗数据建立的。转换器静态热模型是基于双面水冷式压力包装开关开发的。通过具有两个满量程3L-ANPC-VSC支路的单相测试装置,可以通过实验验证开发的功率损耗和热模型。使用经过验证的模型,通过对6兆瓦风力涡轮机电网接口的仿真演示了3L-ANPC-VSC的热性能。因此,在本研究中开发和验证的这些基于转换器结构的模型被证明适用于基于转换器热性能的转换器功率密度和可靠性研究。

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