首页> 外文会议>Industry Applications Conference, 1999. Thirty-Fourth IAS Annual Meeting. Conference Record of the 1999 IEEE >Hybrid multilevel power conversion system: a competitive solution for high power applications
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Hybrid multilevel power conversion system: a competitive solution for high power applications

机译:混合式多级电源转换系统:适用于大功率应用的竞争解决方案

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Use of multilevel inverters is becoming popular in recent years for high power applications. Various topologies and modulation strategies have been investigated for utility and drive applications in literature. Trends in power semiconductor technology indicate a trade-off in the selection of power devices in terms of switching frequency and voltage sustaining capability. New power converter topologies permit modular realization of multilevel inverters using a hybrid approach involving integrated gate commutated thyristors (IGCT) and insulated gate bipolar transistors (IGBT) operating in synergism. This paper is devoted to the investigation of a hybrid multilevel power conversion system typically suitable for high performance, high power applications. This system designed for 4.16 kV, /spl ges/100 hp load comprises of a hybrid seven-level inverter, a diode bridge rectifier and an IGBT rectifier per phase. The IGBT rectifier is used on the utility side as a real power flow regulator to the low voltage converter and as a harmonic compensator for the high voltage converter. The hybrid seven-level inverter on the load side consists of a high voltage, slow switching IGCT inverter and a low voltage, fast switching IGBT inverter. By employing different devices under different operating conditions, it is shown that one can optimize the power conversion capability of entire system. A detailed analysis of a novel hybrid modulation technique for the inverter, which incorporates stepped synthesis in conjunction with variable pulse width of the consecutive steps is included. In addition, performance of a multilevel current regulated delta modulator as applied to the single phase full bridge IGBT rectifier is discussed. Detailed computer simulations accompanied with experimental verification are presented in the paper.
机译:近年来,在高功率应用中,多电平逆变器的使用正变得越来越普遍。已经针对文献中的效用和驱动应用研究了各种拓扑和调制策略。功率半导体技术的趋势表明,就开关频率和电压维持能力而言,在选择功率器件方面需要权衡取舍。新的功率转换器拓扑结构允许使用混合方法实现多级逆变器的模块化实现,该方法包括以协同方式工作的集成栅极换向晶闸管(IGCT)和绝缘栅双极晶体管(IGBT)。本文致力于研究通常适用于高性能,高功率应用的混合多电平功率转换系统。该系统设计用于4.16 kV / spl ges / 100 hp负载,每相包含一个混合七电平逆变器,一个二极管桥式整流器和一个IGBT整流器。 IGBT整流器在公用事业部门用作低压转换器的有功功率调节器,并用作高压转换器的谐波补偿器。负载侧的混合式七电平逆变器由高电压,缓慢开关的IGCT逆变器和低电压,快速开关的IGBT逆变器组成。通过在不同的工作条件下使用不同的设备,表明可以优化整个系统的功率转换能力。详细分析了用于逆变器的新型混合调制技术,该技术结合了逐步合成以及连续步骤的可变脉冲宽度。此外,还讨论了应用于单相全桥IGBT整流器的多级电流调节增量调制器的性能。本文介绍了详细的计算机模拟以及实验验证。

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