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Modal analysis of a PMSG-based DC electrical power system in the more electric aircraft using eigenvalues sensitivity

机译:基于特征值灵敏度的电动飞机中基于PMSG的直流电源系统的模态分析

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摘要

This paper deals with the modeling and small signal stability analysis of a DC-distribution electrical power system (EPS) sourced by a permanent magnet synchronous generator (PMSG). The topology employed here is one of the main candidates for future more-electric aircraft (MEA). A detailed mathematical model is developed and comprehensive EPS modal analysis is performed. Eigenvalue sensitivity and participation factor are utilized in order to assess the effect of machine and control parameters, as well as system operating conditions, on EPS stability. Furthermore, this paper also presents comparative analysis of system models with and without the inclusion of system cabling. This crucial analysis shows that the tendencies in stability behavior can be significantly different with and without cabling. It is therefore shown that system simplification, by removal of cabling, can deliver remarkably misleading results. Time domain simulations are carried out to support the theoretical analysis. The comprehensive analysis presented in this paper provides EPS designers with an extremely useful methodology for the selection of appropriate EPS parameters at the early design stages.
机译:本文研究了永磁同步发电机(PMSG)供电的直流配电系统(EPS)的建模和小信号稳定性分析。这里采用的拓扑是未来更多电动飞机(MEA)的主要候选者之一。建立了详细的数学模型,并进行了全面的EPS模态分析。利用特征值灵敏度和参与因子来评估机器和控制参数以及系统运行条件对EPS稳定性的影响。此外,本文还介绍了带有或不带有系统电缆的系统模型的比较分析。这项至关重要的分析表明,在使用和不使用电缆的情况下,稳定性行为的趋势可能会大不相同。因此表明,通过取消布线,简化系统可以产生明显的误导性结果。进行时域仿真以支持理论分析。本文提供的全面分析为EPS设计师提供了一种非常有用的方法,可以在设计的早期阶段选择合适的EPS参数。

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