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A quadratic inequality approach for design of robust controller for a parametric uncertain jet engine

机译:参数不确定喷气发动机鲁棒控制器设计的二次不等式方法

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摘要

The control logic of a modern jet engine is comprised of many control loops and the control system must account for the uncertainties in the model used in its design. The paper presents a quadratic inequality based methodology for designing a robust controller for a parametrically uncertain jet engine. The inequalities are used for the generation of controller bounds to achieve robust stability and tracking specifications prior to loop shaping. The design is done in the frequency domain and the evolved robust controller controls the system that does not have a distinct set of poles and zeros but a range over which each of the poles and zeros might lie. The methodology has multifarious advantages as it can be easily implemented, does not require template generation and provides the designer with a good insight into the QFT (quantitative feedback theory) bounds at any given design frequency and controller phase. The approach is demonstrated for the design of the speed control loop of a parametrically uncertain twin spool jet engine.
机译:现代喷气发动机的控制逻辑由许多控制回路组成,控制系统必须考虑其设计所用模型的不确定性。本文提出了一种基于二次不等式的方法,用于为参数不确定的喷气发动机设计鲁棒控制器。不等式用于生成控制器边界,以在环路整形之前实现鲁棒的稳定性和跟踪规范。该设计在频域中完成,并且经过改进的鲁棒控制器控制着没有极点和零点的唯一集合,但是每个极点和零点可能位于的范围的系统。该方法具有多种优势,因为它易于实施,不需要模板生成,并且使设计人员可以在任何给定的设计频率和控制器阶段充分了解QFT(定量反馈理论)的范围。该方法被证明用于参数不确定双转子喷气发动机的速度控制环的设计。

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