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A medium-frequency transformer with multiple secondary windings for grid connection through H-bridge voltage source converters

机译:具有多个辅助绕组的中频互感器,用于通过H桥电压源转换器网格连接

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Although the power output of today's wind turbine has exceeded 7 MW, the voltage rating of the most common generator is below 700 V. A low-frequency transformer is commonly used to step-up the voltage to the grid voltage level, e.g. 11 kV or 33 kV. These heavy and bulky low-frequency transformers significantly increase the volume and weight of nacelle. To achieve a compact and light nacelle, a medium-voltage converter with series-connected H-bridge (SCHB) topology would be an attractive technology for future wind turbines. However, the SCHB converter requires multiple isolated and balanced DC sources, which makes the application not straightforward. As an alternative approach to generate multiple isolated and balanced sources a prototype transformer with six secondary windings, 1.26 kVA and 10 kHz, is designed and developed for 1 kV five levels SCHB multilevel converters. The experimental results show that the proposed system may be attractive in grid based renewable energy systems.
机译:虽然当今风力涡轮机的功率输出已超过7兆瓦,但最常见的发电机的电压等级低于700 V.低频变压器通常用于将电压升高到电网电压电平。 11 kV或33 kV。 这些重型和庞大的低频变压器显着增加了机舱的体积和重量。 为实现紧凑且灯泡机舱,带有系列连接的H-Bridge(SCHB)拓扑的中压转换器将是未来风力涡轮机的有吸引力的技术。 但是,SCHB转换器需要多个隔离和平衡的DC源,这使得应用程序不直接。 作为产生多个隔离和平衡源的替代方法,设计并开发了具有六个次级绕组,1.26 kVA和10 kHz的原型变压器,为1 kV五级Schb多级转换器设计和开发。 实验结果表明,所提出的系统在基于网格的可再生能源系统中可能具有吸引力。

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