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MULTI-STAGE SYSTEM IDENTIFICATION OF A GAS TURBINE

机译:燃气轮机的多级系统识别

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Several techniques have recently been proposed to identify open-loop system models from input-output data obtained while the plant is operating under closed-loop control. So called multistage identification techniques are particularly useful in industrial applications where obtaining input-output information in the absence of closed-loop control is often difficult. These open-loop system models can then be employed in the design of more sophisticated closed-loop controllers. This paper introduces a methodology to identify linear open-loop models of gas turbine engines using a multi-stage identification procedure. The procedure utilizes closed-loop data to identify a closed-loop sensitivity function in the first stage and extracts the open-loop plant model in the second stage. The closed-loop data can be obtained by any sufficiently informative experiment from a plant in operation or simulation. We present simulation results here. This is the logical process to follow since using experimentation is often prohibitively expensive and unpractical. Both identification stages use standard open-loop identification techniques. We then propose a series of techniques to validate the accuracy of the identified models against first principles simulations in both the time and frequency domains. Finally, the potential to use these models for control design is discussed.
机译:最近已经提出了几种技术来从在工厂在闭环控制下运行时获得的输入-输出数据中识别开环系统模型。所谓的多级识别技术在工业应用中特别有用,在工业应用中,在缺乏闭​​环控制的情况下很难获得输入-输出信息。然后,可以将这些开环系统模型用于更复杂的闭环控制器的设计中。本文介绍了一种使用多阶段识别程序来识别燃气涡轮发动机的线性开环模型的方法。该过程在第一阶段利用闭环数据来识别闭环敏感性函数,并在第二阶段提取开环工厂模型。闭环数据可以通过运行或仿真中的工厂通过任何具有足够信息量的实验来获得。我们在这里展示仿真结果。这是要遵循的逻辑过程,因为使用实验通常过于昂贵且不切实际。两个识别阶段都使用标准的开环识别技术。然后,我们提出了一系列技术,以针对时域和频域中的第一性原理仿真来验证所识别模型的准确性。最后,讨论了使用这些模型进行控制设计的潜力。

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