用于高频应用的级联开关的初步测试

F. Pellitteri, V. Castiglia, A. D. Di Tommaso, R. Miceli, G. Vassallo, L. Schirone
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引用次数: 2

摘要

如今,越来越多的电气化水平正在向不同的部门,如运输和工业电子解决。为此,高速电机在航空电子、汽车、压缩机和主轴等不同的应用领域都是一项成熟的技术。为了在不采用庞大滤波电路的情况下保证高速度和高电能质量,直流-交流变换器需要采用高脉宽调制(PWM)频率进行控制。除了新兴的开关器件技术,如基于碳化硅(SiC)和氮化镓(GaN)的开关器件技术外,为了在保持高电压水平的同时满足更高的开关频率,替代电路拓扑结构至关重要。Cascode (CC)结构为这些应用程序提供了一个有吸引力的拓扑结构。本文通过模拟400 Hz正弦脉宽调制,研究了一种基于CC器件的三相逆变器。实验结果表明,通过CC结构实现的单开关DC-AC运行良好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Preliminary test on a cascode switch for high-frequency applications
Nowadays, an increasing electrification level is being addressed towards different sectors, such as transportation and industrial electronics. To bear that, high speed electrical machines represent a mature technology in different application fields, e.g. avionics, automotive, compressors and spindles. In order to guarantee high speed while keeping high power quality without adopting bulky filtering circuits, DC-AC converters shall be controlled by means of high Pulse Width Modulation (PWM) frequencies. In addition to the emerging switching device technologies, such as those based on Silicon-Carbide (SiC) and Gallium-Nitride (GaN), alternative circuital topologies are crucial in order to comply with the higher switching frequencies while maintaining high voltage levels. The Cascode (CC) structure represents an attractive topology for those applications. In this paper a three phase inverter based on CC devices is investigated, by simulating a 400 Hz sinusoidal PWM. Experimental results showing the satisfactory operation of a single-switch DC-AC implemented through a CC architecture are provided as well.
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