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Driving a synchronous motor so that it emulates a twin-shaft gas turbine engine

机译:驱动同步电动机,使其模仿双轴燃气轮机发动机

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This paper presents a model-based control method for using a vector controlled synchronous motor to emulate the behaviour of a twin-shaft gas turbine engine as it drives an electric generator supplying power to steady-state and dynamic loads. The aim of this approach is to provide an in-door test-bed for the generator itself, in the absence of the engine that will eventually be used as prime mover. The control method is validated on a much-smaller (benchtop-scale) hardware-in-the-loop (HIL) implementation of the engine emulator system. The motor speed controller tracks the output speed of a simulated real-time engine model in order to generate appropriate voltage and frequency demands for the variable speed inverter that drives the motor. The inertia of the synchronous motor is varied by adding inertial loading to its shaft in order to study the effect of emulating a prime mover with a higher inertia than the emulator motor. Experimental results show that the emulator motor is able to track the engine speed with excellent accuracy when its inertia is lower than the engine model. But, when the emulator motor inertia is higher than the engine model the speed tracking performance of the motor presents a dynamic lag and it requires a larger control effort.
机译:本文提出了一种基于模型的控制方法,该方法使用矢量控制的同步电动机来模拟双轴燃气涡轮发动机在驱动发电机向稳态和动态负载供电时的行为。这种方法的目的是在没有最终将用作原动机的发动机的情况下,为发电机本身提供室内试验台。该控制方法已在发动机仿真器系统的更小(台式规模)硬件在环(HIL)实施中得到验证。电动机速度控制器跟踪模拟的实时发动机模型的输出速度,以便为驱动电动机的变速逆变器生成适当的电压和频率要求。同步电动机的惯性是通过在其轴上增加惯性载荷来改变的,以便研究以比仿真电动机更高的惯性来仿真原动机的效果。实验结果表明,当仿真器电动机的惯性低于发动机模型时,它能够以优异的精度跟踪发动机转速。但是,当仿真器电动机的惯性高于发动机模型时,电动机的速度跟踪性能会出现动态滞后,并且需要更大的控制精力。

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