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A Comparison of Multivariable Control Design Techniques for a Turbofan Engine Control

机译:涡扇发动机控制多变量控制设计技术的比较

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摘要

This paper compares two previously published design procedures for two different multivariable control design techniques for application to a linear engine model of a jet engine. The two multivariable control design techniques compared were the Linear Quadratic Gaussian with Loop Transfer Recovery (LQG/LTR) and the H-Infinity synthesis. The two control design techniques were used with specific previously published design procedures to synthesize controls which would provide equivalent closed loop frequency response for the primary control loops while assuring adequate loop decoupling. The resulting controllers were then reduced in order to minimize the programming and data storage requirements for a typical implementation. The reduced order linear controllers designed by each method were combined with the linear model of an advanced turbofan engine and the system performance was evaluated for the continuous linear system. Included in the performance analysis are the resulting frequency and transient responses as well as actuator usage and rate capability for each design method. The controls were also analyzed for robustness with respect to structured uncertainties in the unmodeled system dynamics. The two controls were then compared for performance capability and hardware implementation issues.
机译:本文针对两种不同的多变量控制设计技术,比较了两个先前发布的设计程序,将其应用于喷气发动机的线性发动机模型。比较的两种多变量控制设计技术是具有循环转移恢复的线性二次高斯(LQG / LTR)和H-无穷大综合。两种控制设计技术已与特定的先前发布的设计过程一起使用,以合成控制,这些控制将为主要控制回路提供等效的闭环频率响应,同时确保适当的回路解耦。然后减少所得的控制器,以使典型实现的编程和数据存储需求最小化。将每种方法设计的降阶线性控制器与先进涡扇发动机的线性模型相结合,并评估了连续线性系统的系统性能。性能分析中包括每种设计方法的最终频率和瞬态响应以及执行器的使用和速率能力。还针对未建模系统动力学中的结构不确定性分析了控件的鲁棒性。然后比较这两个控件的性能和硬件实施问题。

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