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Cross-Platform Distributed Heterogeneous Simulation of a More-Electric Aircraft Power System

机译:电动飞机动力系统的跨平台分布式异构仿真

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To support research and analysis requirements in the development of future power systems, a flexible and efficient means of predicting the dynamic performance of large-scale multi-disciplinary systems prior to hardware trials is crucial. With the development of Distributed Heterogeneous Simulation (DHS), the technology now exists to enable this type of investigation. Previously, DHS was shown to allow the interconnection of component simulations running on a single-or distributed-computer network and developed using any combination of a variety of commercial-off-the-shelf (COTS) software packages for the Microsoft Windows operating system. However, for large-scale systems, all subsystem models may not be developed in software packages operating under Windows thereby requiring a translation of such models in order to incorporate them within a system simulation. In this paper, the DHS technique is expanded to support the UNIX operating system, thus, allowing subsystem models developed and executed on either UNIX- or Windows-based computers to be interconnected to form a dynamic system simulation. For the purpose of demonstration, a more-electric fighter (MEF) power system, such as that found on the Joint Strike Fighter (JSF), has been selected as a study system. This system is comprised of ten component models each developed using MATLAB/Simulink™, EASY5™, or ACSL™. Utilizing the system simulation, studies have been performed to illustrate the dynamic interactions between the subsystems when simulated on a heterogeneous computer network containing both Windows- and Unix-based machines.
机译:为了支持未来电力系统开发中的研究和分析要求,在硬件试验之前采用灵活有效的方法来预测大型多学科系统的动态性能至关重要。随着分布式异构仿真(DHS)的发展,现在存在可以进行此类调查的技术。以前,DHS被证明可以互连在单计算机或分布式计算机网络上运行的组件模拟,并且可以使用Microsoft Windows操作系统的各种商用现货(COTS)软件包的任意组合进行开发。但是,对于大型系统,可能不会在Windows下运行的软件包中开发所有子系统模型,因此需要转换此类模型才能将其纳入系统仿真中。在本文中,DHS技术得到了扩展以支持UNIX操作系统,从而允许互连在基于UNIX或Windows的计算机上开发和执行的子系统模型,以形成动态系统仿真。为了演示的目的,已选择了诸如联合攻击战斗机(JSF)上的多电战斗机(MEF)动力系统作为研究系统。该系统由十个组件模型组成,每个组件模型都是使用MATLAB / Simulink™,EASY5™或ACSL™开发的。利用系统仿真,已经进行了研究以说明当在包含基于Windows和Unix的计算机的异构计算机网络上进行仿真时,子系统之间的动态交互。

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