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An Isolated Bi-directional High-Frequency-AC Link DC-AC Converter Using Hybrid SiC Switches with Carrier-Based Unipolar Modulation Technique

机译:一种隔离的双向高频-AC链路DC-AC转换器,采用混合SIC开关,具有基于载体的单极调制技术

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摘要

A novel isolated bi-directional soft-switched high-frequency-AC (HFAC) link DC-AC converter using SiC MOSFET and IGBT hybrid switches is presented in this paper. The DC-AC converter is composed of a full-bridge (FB) inverter cascaded with a cycloconverter through a high-frequency transformer. In order to increase the converter efficiency, and to push the transformer frequency to 50-100 kHz, SiC MOSFETs are preferable devices compared to the traditional IGBTs or SCRs. A unipolar-SPWM-oriented modulation technique is proposed to realize zero-voltage-switching (ZVS) for FB and zero-current-switching (ZCS) for cycloconverter, and to suppress the voltage spikes introduced by the transformer leakage inductance as well. With the novel modulation technique, half of the AC switches in the cycloconverter work under transformer frequency and the rest work at line frequency (60 Hz). Therefore a SiC-IGBT hybrid switch structure is proposed for the cycloconverter. Simulation model and a 400 VDC to 240 VAC, 3 kW prototype have been developed to validate the effectiveness and performance of the proposed unipolar soft-switching modulation technique and the hybrid switch structure.
机译:分离双向的新型软切换高频AC(HFAC)链路DC-AC转换器使用SiC MOSFET和IGBT混合开关本文呈现。该DC-AC转换器由逆变器级联通过高频变压器周波变换器的全桥(FB)的。为了提高转换效率,并且向变压器频率推到50-100千赫兹,碳化硅MOSFET是相对于传统的IGBT或SCR的优选设备。提出了一种单极SPWM为本调制技术来实现零电压开关(ZVS),用于FB和零电流开关(ZCS),用于循环换流器,并且能够抑制由变压器的漏电感引入以及电压尖峰。以新颖的调制技术中,AC的一半下变压器频率和线频率(60赫兹)的其余部分工作循环换流器的工作进行切换。因此由SiC-IGBT混合开关的结构,提出了循环换流器。仿真模型和400 VDC到240 VAC,3个千瓦原型已经发展到验证所提出单极软开关调制技术和混合开关结构的有效性和性能。

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