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Functional Modeling of Symmetrical Multipulse Autotransformer Rectifier Units for Aerospace Applications

机译:航天应用对称多脉冲自耦整流器单元的功能建模

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This paper aims to develop a functional model of symmetrical multipulse autotransformer rectifier units (ATRUs) for more-electric aircraft (MEA) applications. The ATRU is seen as the most reliable way readily to be applied in the MEA. Interestingly, there is no model of ATRUs suitable for unbalanced or faulty conditions at the moment. This paper is aimed to fill this gap and develop functional models suitable for both balanced and unbalanced conditions. Using the fact that the dc voltage and current are strongly related to the voltage and current vectors at the ac terminals of ATRUs, a functional model has been developed for the asymmetric ATRUs. The developed functional models are validated through simulation and experiment. The efficiency of the developed model is also demonstrated by comparing with corresponding detailed switching models. The developed functional model shows significant improvement of simulation efficiency, especially under balanced conditions.
机译:本文旨在为更多电动飞机(MEA)应用开发对称多脉冲自耦变压器整流器(ATRU)的功能模型。 ATRU被视为最容​​易在MEA中应用的最可靠方法。有趣的是,目前还没有适合于不平衡或故障情况的ATRU模型。本文旨在填补这一空白,并开发适用于平衡和不平衡条件的功能模型。利用直流电压和电流与ATRU交流端子处的电压和电流矢量密切相关的事实,已经为非对称ATRU开发了一个功能模型。通过仿真和实验验证了开发的功能模型。通过与相应的详细切换模型进行比较,还证明了开发模型的效率。开发的功能模型显示出仿真效率的显着提高,尤其是在平衡条件下。

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