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Transient Engine Emulation within a Laboratory Testbed for Aircraft Power Systems

机译:用于飞机电力系统的实验室测试中的瞬态发动机仿真

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This paper presents the details of an engine emulation system utilized within a Hardware-in-the-Loop (HIL) test environment for aircraft power systems. The paper focuses on the software and hardware interfaces that enable the coupling of the engine model and the generator hardware. In particular, the rotor dynamics model that provides the critical link between the modeled dynamics of the engine and the measured dynamics of the generator is described in detail. Careful consideration for the measured torque is included since the measurement contains inertial effects as well as torsional resonances. In addition, the rotor model is equipped with the ability to apply power and speed scaling between the engine and generator. This scaling approach provides significant flexibility that can be useful when hardware resources are limited such that a direct engine-generator match is not possible or when one wants to evaluate turboshaft engine dynamics for a variety of applications and power levels. Depending on what type of scaling is used, there may be an effect on the maximum power the drive stand must provide to fully emulate engine transients. Explicit torque/power requirements are given, along with an evaluation of the existing drive stand's emulation capabilities.
机译:本文介绍了用于飞机电力系统的硬件内(HIL)测试环境中使用的发动机仿真系统的细节。本文重点介绍了启用发动机型号和发电机硬件的耦合的软件和硬件接口。特别地,详细描述了提供发动机的建模动态和发电机的测量动态之间的关键链路的转子动力学模型。由于测量含有惯性效应以及扭转共振,因此包括对测量扭矩的仔细考虑。此外,转子模型配备了在发动机和发电机之间施加电力和速度缩放的能力。这种缩放方法提供了显着的灵活性,当硬件资源受到限制,使得不可能或者当想要评估各种应用和功率水平的涡轮轴发动机动态时,可以是有用的。根据使用类型的缩放类型,可能对驱动台必须提供完全模拟发动机瞬变的最大功率影响。给出了明确的扭矩/功率要求,以及对现有的驱动支架仿真能力的评估。

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