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The DOE Next-Generation Drivetrain for Wind Turbine applications: Gearbox, generator, and advanced Si/SiC hybrid inverter system

机译:面向风力涡轮机应用的DOE下一代传动系统:变速箱,发电机和先进的Si / SiC混合逆变器系统

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This paper reports on the design and testing results from the U.S. Department of Energy Next-Generation Wind Turbine Drivetrain Project. The drivetrain design reduces the cost of energy by increasing energy capture through drivetrain efficiency improvements; by reducing operation and maintenance costs through reducing gearbox failures; and by lowering capital costs through weight reduction and a series of mechanical and electronic innovations. The paper provides an overview of the drivetrain gearbox and generator and provides a deeper look into the power converter system. The power converter has a number of innovations including the use of hybrid silicon (Si)/silicon carbide (SiC) isolated baseplate switching modules. Switching energies are compared between SiC and Si PIN diodes. The efficiency improvement by use of the SiC diode in a three-level converter is also described. Finally, a brief discussion covering utility interconnect requirements for turbines is provided with a particular focus on utility events that lead to high transient torque loads on drivetrain mechanical elements.
机译:本文报告了美国能源部下一代风力涡轮机传动系统项目的设计和测试结果。动力传动系统设计通过提高动力传动系统效率来增加能量捕获,从而降低了能源成本。通过减少变速箱故障来降低运营和维护成本;以及通过减轻重量和一系列机械和电子创新来降低资本成本。本文概述了传动系统变速箱和发电机,并对功率转换器系统进行了更深入的研究。功率转换器具有许多创新,包括使用混合硅(Si)/碳化硅(SiC)隔离基板开关模块。比较SiC和Si PIN二极管之间的开关能量。还描述了通过在三电平转换器中使用SiC二极管来提高效率。最后,简要讨论了涡轮机的公用设施互连要求,重点是公用设施事件,这些事件会导致传动系统机械元件上出现高瞬态转矩负载。

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