首页> 外文会议>2017 European Conference on Electrical Engineering and Computer Science >Mathematical Models and Simulation of key Multi- Pulse Rectifiers in field of Autonomous Electric Power Supply System, using Matlab/Simulink Programming Environment Compatible with the Concept of a More Electric Aircraft (MEA)
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Mathematical Models and Simulation of key Multi- Pulse Rectifiers in field of Autonomous Electric Power Supply System, using Matlab/Simulink Programming Environment Compatible with the Concept of a More Electric Aircraft (MEA)

机译:使用与更多电动飞机(MEA)概念兼容的Matlab / Simulink编程环境,在自主供电系统领域中的关键多脉冲整流器进行数学模型和仿真

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The work deals with the issues of new architecture in terms of power multi-pulse rectifiers based on the 12-, 24-, and 48-pulse rectifiers, compatible with the concept of a MEA. The subject of this paper is to present the analysis, the mathematical models and simulations of the operation of a advanced multi-pulse rectifiers, used in the field of energoelectronic power systems PES, both on civil aircraft of aircraft companies Airbus and Boeing (A-380 and A-350XWB, B-787), as well as on military aircrafts of Lockheed Martin (JSF F-35 and F-22 Raptor), compatible with the trend of more electric aircraft. Based on the above, in the final part of the paper the models and analysis of simulation waveforms of considered rectifiers was made and practical conclusions were drawn in terms of advanced power systems PES according to the concept of more electric aircraft.
机译:这项工作涉及基于12脉冲,24脉冲和48脉冲整流器的功率多脉冲整流器,并与MEA的概念兼容,从而解决了新架构的问题。本文的主题是介绍在飞机公司空中客车公司和波音公司的民用飞机上,在能量电子电源系统PES领域中使用的先进多脉冲整流器的分析,数学模型和仿真。 380和A-350XWB,B-787)以及洛克希德·马丁公司的军用飞机(JSF F-35和F-22 Raptor),与更多电动飞机的趋势兼容。在此基础上,本文最后对考虑的整流器的仿真波形进行了建模和分析,并根据更多的电动飞机的概念​​,针对先进电力系统PES提出了实用的结论。

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