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A novel multi-level electro-mechanical actuator virtual testing and analysis tool

机译:一种新型的多级机电执行器虚拟测试与分析工具

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The electrification of the modern aircraft and helicopters, by means of the adoption of electromechanical actuators (EMAs), represents a step in the direction of a more energy efficient transportation system. Simulation tools capable of analyzing EMAs performance and exploring different design configurations facilitate such a process. In this context, a virtual testing and analysis tool for EMAs, developed within the framework of the European project Actuation 2015, is presented. The proposed tool addresses the electric drives components (i.e. permanent magnet machines and power converters) and has been implemented using Modelica, as modelling language, and Dymola, as simulation environment. In order to minimize the models complexity, a multi-level approach has been adopted. In this paper, an overview of the physical effects considered at each model level is provided, together with the analysis of an EMA study case. The presented simulation results confirm the effectiveness of the proposed virtual testing and analysis tool.
机译:通过采用机电执行器(EMA),现代飞机和直升机的电气化标志着朝着更加节能的运输系统迈出了一步。能够分析EMA性能并探索不同设计配置的仿真工具有助于实现这一过程。在此背景下,介绍了在欧洲项目Actuation 2015框架内开发的EMA的虚拟测试和分析工具。拟议的工具解决了电力驱动组件(即永磁电机和功率转换器)的问题,并已使用Modelica(作为建模语言)和Dymola(作为模拟环境)来实现。为了最小化模型的复杂性,已采用了多级方法。在本文中,提供了在每个模型级别考虑的物理效应的概述,以及对EMA研究案例的分析。所提供的仿真结果证实了所提出的虚拟测试和分析工具的有效性。

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