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A real time Pegasus propulsion system model for VSTOL piloted simulation evaluation

机译:用于VSTOL操纵仿真评估的实时飞马推进系统模型

摘要

A real time propulsion system modeling technique suitable for use in man-in-the-loop simulator studies was developd. This technique provides the system accuracy, stability, and transient response required for integrated aircraft and propulsion control system studies. A Pegasus-Harrier propulsion system was selected as a baseline for developing mathematical modeling and simulation techniques for VSTOL. Initially, static and dynamic propulsion system characteristics were modeled in detail to form a nonlinear aerothermodynamic digital computer simulation of a Pegasus engine. From this high fidelity simulation, a real time propulsion model was formulated by applying a piece-wise linear state variable methodology. A hydromechanical and water injection control system was also simulated. The real time dynamic model includes the detail and flexibility required for the evaluation of critical control parameters and propulsion component limits over a limited flight envelope. The model was programmed for interfacing with a Harrier aircraft simulation. Typical propulsion system simulation results are presented.
机译:开发了一种适用于人在环模拟器研究的实时推进系统建模技术。该技术提供了集成飞机和推进控制系统研究所需的系统精度,稳定性和瞬态响应。选择了Pegasus-Harrier推进系统作为开发VSTOL的数学建模和仿真技术的基准。最初,对静态和动态推进系统的特征进行了详细建模,以形成飞马发动机的非线性空气动力数字计算机仿真。通过这种高保真度仿真,通过应用分段线性状态变量方法来建立实时推进模型。还对水力机械和注水控制系统进行了仿真。实时动态模型包括在有限的飞行范围内评估关键控制参数和推进组件限制所需的细节和灵活性。对该模型进行了编程,可用于与Harrier飞机仿真进行交互。给出了典型的推进系统仿真结果。

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