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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Application of Multiphysical Domain Modeling in Electrical System Simulation
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Application of Multiphysical Domain Modeling in Electrical System Simulation

机译:多职域建模在电气系统模拟中的应用

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摘要

The energy structure change of more electric aircraft makes the aircraft airborne system more complicated. Each subsystem realizes the transmission, interaction, and conversion of energy and information through the dynamic coupling and coordinated control of electrical energy, mechanical energy, hydraulic energy, and thermal energy. This paper applies the multiphysical domain modeling method with the parameter identification according to the original model data. Based on the power conversion relationship of electrical equipment, it defines the port with the power potential variable and flow variable and is supplemented by the information control. It can show the dynamic characteristics, power conversion, and loss characteristics of the device itself. The models can conveniently perform the large-scale system integration, which not only can build the complex electrical equipment formed by multiphysical domain models with the series connection but also can build a complex power supply system formed by multiphysical domain models with the parallel connection.
机译:更多电气飞机的能量结构变化使飞机空气传播系统更加复杂。每个子系统通过动态耦合和协调控制来实现能量和信息的传输,交互和转换,以及对电能,机械能,液压能量和热能的协调。本文根据原始模型数据应用具有参数识别的多职域建模方法。基于电气设备的电源转换关系,它定义了具有电源电位变量和流量变量的端口,并通过信息控制来补充。它可以显示设备本身的动态特性,功率转换和损耗特性。该模型可以方便地执行大规模的系统集成,这不仅可以构建具有串联连接的多体域型号组成的复杂电气设备,还可以构建由多体域模型形成的复杂电源系统,并联连接。

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