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High Density Power Conversion Electronics Enabled by GaN-Based Modular Topologies

机译:基于GaN的模块化拓扑实现的高密度功率转换电子器件

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摘要

This dissertation explores the use of modular multilevel converter (MMC) architectures, coupled with wide-bandgap semiconductors, to achieve high power-density in power electronics converters. At the converter level, the capabilities of the modular multilevel converter are investigated for their use in low voltage, low power, DC-DC and DC-AC applications. This investigation shows that the use of modular multilevel architectures enables low voltage Gallium Nitride high electron mobility transistors (GaN HEMTs) to be used in applications for which their voltage thresholds are not typically suited. This results in lightweight, compact, conversion systems.ududGaN HEMTs have been shown to provide a low loss, low volume alternative to Silicon transistors for power conversion, but require several enabling technologies to make them ideally suited to high-density converters. This work therefore presents two enabling technologies for GaN-based conversion circuits. First, a technique is developed that optimizes the gate resistance for driving GaN HEMTs in order to ensure safe, rapid device turn on. Next, the development of planar magnetic transformers is discussed, with a focus on high-frequency converter operation. For each of these technologies mathematical analysis, circuit simulation, and hardware development are performed and compared to ensure proper functionality.ududTaking advantage of those two enabling technologies, two converter architectures based on the MMC structure are developed. First, a DC-AC MMC is presented, taking advantage of GaN HEMTs and minimal filtering requirements to achieve high power density in low voltage systems. Next, that topology is extended and a novel DC-DC converter based on two coupled DC-AC MMCs is presented. Both systems are described mathematically, simulated, and developed as hardware prototypes to prove functionality. While both converter systems are relevant for applications in DC microgrids, the DC-AC converter will be specifically investigated for its application as a variable speed drive in naval power systems. Likewise, the DC-DC MMC will be shown to provide new solutions for high voltage spacecraft power systems. ududBased on the work presented in this dissertation, engineers will be presented with alternatives to traditional methods of achieving high density in power conversion systems. By coupling the low filtering requirements and low losses of the modular multilevel converter with low voltage, highly efficient GaN HEMTs, the presented converter systems achieve high power density and efficiency with minimal filtering requirements. The result of this work is two novel converter systems that will enable further research into lightweight, low volume, power conversion.
机译:本文探讨了模块化多电平转换器(MMC)架构与宽带隙半导体的结合使用,以实现电力电子转换器中的高功率密度。在转换器级别,研究了模块化多电平转换器在低压,低功耗,DC-DC和DC-AC应用中的功能。这项研究表明,模块化多级体系结构的使用使低压氮化镓高电子迁移率晶体管(GaN HEMT)可以用于其电压阈值通常不适合的应用中。这导致了轻巧,紧凑的转换系统。氮化镓HEMT已显示出可提供低损耗,小体积的替代品来替代硅晶体管进行功率转换,但需要多种使能技术使其理想地适合于高密度转换器。因此,这项工作提出了两种基于GaN的转换电路的使能技术。首先,开发了一种技术,该技术可优化用于驱动GaN HEMT的栅极电阻,以确保安全,快速地开启器件。接下来,将讨论平面磁变压器的开发,重点是高频转换器的操作。对于这些技术中的每一项,都进行了数学分析,电路仿真和硬件开发,并进行了比较,以确保它们具有适当的功能。 ud ud利用这两种启用技术的优势,开发了两种基于MMC结构的转换器架构。首先,提出了一种DC-AC MMC,它利用GaN HEMT和最小的滤波要求来在低压系统中实现高功率密度。接下来,对该拓扑进行了扩展,并提出了一种基于两个耦合的DC-AC MMC的新型DC-DC转换器。对这两个系统都进行了数学描述,模拟并开发为硬件原型以证明其功能。虽然这两种转换器系统都适用于DC微电网,但将专门研究DC-AC转换器在海军电力系统中作为变速驱动器的应用。同样,将显示DC-DC MMC为高压航天器电源系统提供新的解决方案。 ud ud基于本文提出的工作,将向工程师介绍传统方法在功率转换系统中实现高密度的替代方法。通过将模块化多电平转换器的低滤波要求和低损耗与低电压,高效的GaN HEMT相结合,提出的转换器系统以最小的滤波要求实现了高功率密度和效率。这项工作的结果是两个新颖的转换器系统,它们将使人们能够进一步研究轻量,小体积,功率转换。

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    Barchowsky Ansel;

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  • 年度 2017
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  • 正文语种 en
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