用于未来电动飞机的10兆瓦电力驱动系统的数字孪生

Xinjun Liu, Christian Bentheimer, F. Hilpert, M. Hofmann, B. Eckardt, M. Maerz
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引用次数: 3

摘要

可靠和高功率密度的电机和逆变器解决方案对于各种应用至关重要。数字孪生在未来电动飞机上的应用有助于分析系统行为和快速开关逆变器与电机之间的影响。在本文中,提出了“用于未来电动飞机应用的10mw电气驱动系统的数字孪生”的概念。数字孪生平台是基于一个外转子永磁同步电机和几个交错的多级sic逆变器,它允许使用高开关频率和1500 V的高直流链路电压。这些部件的组合在未来的电动飞机应用中具有优势。研究了几种多级逆变器拓扑结构,并提出了一个10.5 MW逆变器系统的第一个系统设计。工业4.0在电力驱动生产中的应用
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Digital Twin for a 10 MW Electrical Drive System for Future Electric Aircraft Applications
Reliable and high power density electric machine and inverter solutions are essential for a variety of applications. Digital twin for future electric aircraft applications can contribute to analyze the system behavior and the effects between the fast-switching inverter and the electric machine. Within this paper, the concept of a “Digital Twin for a 10 MW Electrical Drive System for Future Electric Aircraft Application” is presented. A digital twin platform is based on an outer-rotor permanent magnet synchronous machine and serval interleaved multi-level SiC-inverters, which allows the usage of high switching frequencies and a high DC link voltage of 1500 V. The combination of those components have advantages in future electric aircraft applications. Several multi-level inverter topologies have been investigated and a first system design for a 10.5 MW inverter system is presented. Industry 4.0 Applications in Electric Drives Production
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