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Modular Three-level T-type Power Electronics Building Block for Aircraft Electric-Propulsion Drives

机译:用于飞机电动推进驱动器的模块化三级T型电源电子构建块

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The power electronics drives for electric propulsion in more-electric aircraft need to highly efficient and power-dense. Moreover, a modular approach to the drive's construction ensures reduced costs, reliability, and ease of maintenance. In this paper, the design and development of a modular power electronics building block (PEBB) in a dc-ac three-level t-type single phase-leg topology is presented. The designed PEBB is capable of 100-kW power processing and suitable for 1-kV dc-link. A hybrid switch consisting of a silicon IGBT and silicon carbide MOSFET was used as the switching device in the PEBB. The hybrid switch enables high switching frequencies at high-power than the conventional silicon IGBT. A model-based design tool facilitated the topology and semiconductor selection for high conversion efficiency and lightweight. Due to the unavailability of commercial three-level t-type power modules, a PCB- and off-the-shelf discrete semiconductor-based high-power switch was designed for the neutral point clamping. A non-trivial design of an aluminum-based multilayer laminated busbar, a key element in the PEBB, was the primary focus of the work. The busbar had symmetrical low-inductance commutation loops, and the value was in the range of 28 - 29 nH. The block's specific-power and volumetric power density were estimated to be 27.7 kW/kg and 308.61 W/in3, respectively. Finally, the block's continuous operation was demonstrated at 48 kVA, and the efficiency of the block was 98.2%.
机译:电力电子设备在更多电气飞机中进行电动推进需要高效和高效。此外,驱动器施工的模块化方法可确保降低成本,可靠性和维护易于维护。本文介绍了DC-AC三级T型单相腿拓扑中模块化电力电子构建块(PEBB)的设计和开发。设计的PEBB能够提供100千瓦的电源处理,适用于1-KV DC-Link。使用由硅IGBT和碳化硅MOSFET组成的混合开关作为PEBB中的开关装置。混合开关能够高于传统硅IGBT实现高功率的高开关频率。基于模型的设计工具促进了高转换效率和轻质的拓扑和半导体选择。由于商业三级T型功率模块的不可用,设计了一种基于PCB和现成的离散半导体的高功率开关,用于中性点夹紧。一种基于铝制的多层层压母线,PEBB中的关键元件的非平凡设计是该工作的主要重点。母线具有对称的低电感换向环路,该值在28 - 29 NH的范围内。块的特定功率和体积功率密度估计分别为27.7 kW / kg和308.61 w / in3。最后,块的连续操作在48 kVA下证明,该块的效率为98.2%。

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