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THRUST CONTROL OF SMALL TURBOJET ENGINES USING FUZZY LOGIC: DESIGN AND EXPERIMENTAL VALIDATION

机译:基于模糊逻辑的小型涡轮发动机推力控制:设计与实验验证

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摘要

The aim of this paper is to propose an effective technique which employs a proportional-integral Fuzzy logic controller for the thrust regulation of small scale turbojet engines, capable of ensuring high performance in terms of response speed, precision and stability. Fuzzy rules have been chosen by logical deduction and some specific parameters of the closed loop control have been optimized using a numerical simulator, so as to achieve rapidity and stability of response, as well as absence of overshoots. The proposed Fuzzy logic controller has been tested on the Pegasus MK3 microturbine: the high response speed and precision of the proposed thrust control, revealed by the simulations, have been confirmed by several experimental tests with step response. Its stability has been demonstrated by means of the frequency response analysis of the system. The proposed thrust control technique has general validity and can be applied to any small-scale turbojet engine, as well as to microturbines for electricity production, provided that thrust being substituted with the net mechanical power.
机译:本文的目的是提出一种有效的技术,该技术采用比例积分模糊逻辑控制器来控制小型涡轮喷气发动机的推力,从而能够确保响应速度,精度和稳定性方面的高性能。通过逻辑推导选择了模糊规则,并使用数值模拟器对闭环控制的某些特定参数进行了优化,以实现响应的快速性和稳定性以及不存在过冲。拟议的模糊逻辑控制器已在Pegasus MK3微型涡轮机上进行了测试:仿真显示,拟议的推力控制具有较高的响应速度和精度,已通过一些具有阶跃响应的实验测试得到了证实。通过系统的频率响应分析已证明了其稳定性。所提出的推力控制技术具有普遍有效性,并且可以将其应用于任何小型涡轮喷气发动机以及用于发电的微型涡轮机,只要推力被净机械功率替代即可。

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