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Stability assessment of a droop-controlled multi-generator electrical power system in the more electric aircraft using parameter space approach

机译:使用参数空间法评估电动飞机中下垂控制的多发电机电力系统的稳定性

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摘要

This paper investigates the dynamic stability of a droop-controlled multi-generator system in the more electric aircraft (MEA). Based on the developed state-space model of the potential dc electrical power system (EPS) architecture, the stability boundaries of EPS operation depending on parameter variations including component parameters and operating conditions are investigated. The effect of multiple parametric uncertainties on EPS stability is graphically illustrated by stability regions maps. In addition, the effect of the droop coefficient on the stability is discussed from the impedance point of view. The detailed mathematical models and analytical results of stability assessment are verified by time domain simulation studies.
机译:本文研究了电动飞机(MEA)中下垂控制的多发电机系统的动态稳定性。基于已开发的潜在直流电力系统(EPS)体系结构的状态空间模型,研究了取决于参数变化(包括组件参数和运行条件)的EPS运行的稳定性边界。稳定性区域图以图形方式说明了多个参数不确定性对EPS稳定性的影响。此外,从阻抗的角度讨论了下垂系数对稳定性的影响。通过时域仿真研究验证了详细的数学模型和稳定性评估的分析结果。

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