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Power-Dense Multilevel Inverter Module using Interleaved GaN-Based Phases for Electric Aircraft Propulsion

机译:电源密集的多级逆变器模块采用交错GaN的电气飞机推进阶段

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Realizing the electrification of aircraft necessitates the development of inverters and rectifiers with ultra-high efficiency and specific power simultaneously. Unconventional topologies such as the flying capacitor multilevel (FCML) inverter hold great promise for achieving transformational reductions in inverter power loss and weight due to drastically smaller filters and compact hybrid energy transfer mechanism. After describing methods to overcome obstacles in ultra-efficient and lightweight converter design, this work presents an example of interleaved FCML inverter operation. The successful, balanced interleaved operation was demonstrated in the laboratory with a dual-interleaved, 9-level converter prototype at 1 kV input bus voltage and 9.7 kW output power. At 98.6% peak efficiency, this converter achieves a gravimetric power density of 17.3 kW/kg and a volumetric power density of 35.3 kW/L including the contributions of the heat sink. Interestingly, observations from loss modeling and hardware efficiency measurements revealed the large impact of second-order loss mechanisms, such as dynamic on-state resistance and junction temperature. Insights gained from this new understanding can be incorporated into future modeling for more thorough optimization of the converter design.
机译:实现飞机的电气化需要同时具有超高效率和特定功率的逆变器和整流器的开发。非常规的拓扑结构,如快速电容器的多级(FCML)逆变器保持用于实现逆变器的功率损耗和重量由于急剧较小的过滤器和紧凑的混合能量转换机构转型减少很大的希望。在描述超高效和轻质转换器设计中克服障碍物的方法之后,该工作提出了一个交错的FCML逆变器操作的示例。在实验室中成功地,平衡的交错操作,具有双交错的9级转换器原型,在1 kV输入总线电压和9.7 kW输出功率。达到98.6%的峰值效率,该转换器达到了17.3千瓦/千克的重量功率密度和35.3千瓦/ L的容量功率密度,包括散热器的贡献。有趣的是,损失建模和硬件效率测量的观察显示了二阶损耗机制的大冲击,例如动态导通电阻和结温。从这种新的理解中获得的见解可以纳入未来的模型,以便更彻底地优化转换器设计。

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