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Aircraft Power System Stability Study Including Effect of Voltage Control and Actuators Dynamic

机译:飞机动力系统稳定性研究,包括电压控制和执行器动态特性

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摘要

This paper describes a stability analysis of aircraft ac frequency-wild power systems with constant power loads (CPL). In contrast to previous publications, the proposed analysis method employs the $dq$ modeling approach instead of the state-space averaging (SSA) and average-value modeling (AVM) methods to derive power-electronic converter models for stability studies. This results in lower order models and allows the modeling of vector-controlled converter elements where the SSA and AVM methods are not easily applicable. The resulting model can be combined with models of other power system elements expressed in terms of synchronously rotating frames (generators, front-end converters, vector-controlled drives, etc.). The paper analyzes the stability of frequency-wild power systems for both load and parameter variations and takes into account controlled generator voltage dynamics and electromechanical actuator dynamics. The stability margins are assessed and compared with those for power systems with the ideal voltage source and the ideal CPLs. The study is supported by intensive time domain simulations that support the theory.
机译:本文描述了具有恒定功率负载(CPL)的飞机交流频率野生电力系统的稳定性分析。与以前的出版物相比,所提出的分析方法采用$ dq $建模方法,而不是状态空间平均(SSA)和平均值模型(AVM)方法来推导用于稳定性研究的功率电子转换器模型。这导致了较低阶的模型,并允许在不容易应用SSA和AVM方法的情况下对矢量控制的转换器元素进行建模。可以将结果模型与以同步旋转框架(发电机,前端转换器,矢量控制驱动器等)表示的其他电力系统元素的模型组合。本文分析了负载和参数变化下的频率野生电力系统的稳定性,并考虑了受控的发电机电压动态和机电执行器动态。评估稳定裕度,并将其与具有理想电压源和理想CPL的电力系统的裕度进行比较。该研究得到了支持该理论的密集时域仿真的支持。

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