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Sliding Mode Transient Scaling Controller for Gas Turbine Engine Emulation on an Electric Machine

机译:电机上燃气轮机发动机仿真的滑模瞬态缩放控制器

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The testing of hybrid-electric aircraft propulsion system components and control strategies has dictated the need for a low-cost gas turbine engine (GTE) emulation test bed.Within that test bed,electric machines (EMs) are used to emulate the dynamics of a GTE.GTE mathematical models are used to provide control torque commands to EMs.Most GTEs operate at much higher power levels than commercially available EMs.Therefore,the transient shaft dynamics of the GTE must be scaled appropriately.The sliding mode controller being presented here aims to deliver a control torque to an electric machine with a fixed inertia that will allow it to mimic the response of a GTE with a different inertia.This solution provides an easily scalable and tunable transient emulation method without having to scale the GTE mathematical model and/or add inertia to the physical EM shaft.This controller has been proven in simulation to produce nearly identical transient rotational speed response to a reference GTE shaft model which has a large difference in rotational inertia compared to the motor.Also,the inherent robustness of the sliding mode control scheme results in negligible changes in performance for large amounts of parameter uncertainty while minimizing high frequency fluctuations in the control signal.
机译:混合电机推进系统组件和控制策略的测试已经决定了对低成本燃气涡轮发动机(GTE)仿真试验床的需求。试验床,电机(EMS)用于仿真A的动态GTE.GTE数学模型用于向EMS提供控制转矩命令。最多的GTES比市售的EMS更高的功率水平操作。因此,必须适当地缩放GTE的瞬态轴动态。在此呈现滑动模式控制器的目标将控制扭矩传送到具有固定惯性的电机,该电机将使其模仿GTE与不同惯性的响应。本解决方案提供了一种易于缩放和可调的瞬态仿真方法,而无需缩放GTE数学模型和/或将惯性添加到物理EM轴。本控制器已被证明模拟,以产生对参考GTE SH的几乎相同的瞬态转速响应与电动机相比,旋转惯性差异具有很大差异的船尾模型,滑模控制方案的固有稳健性导致大量参数不确定性的性能变化可忽略不计,同时最小化控制信号中的高频波动。

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