非对称输入饱和航空发动机的输出约束切换抗上发条补偿

IF 2.4 Q2 AUTOMATION & CONTROL SYSTEMS IEEE Control Systems Letters Pub Date : 2024-12-23 DOI:10.1109/LCSYS.2024.3521187
Ke Wang;Di Wu;Pengyuan Li;Xu Li
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引用次数: 0

摘要

在实际的航空发动机控制系统中,控制输入的饱和约束本质上是不对称的,发动机输出在运行过程中可能超过其物理或安全限制。本文提出了一种同时考虑非对称输入饱和和输出约束的航空发动机切换抗上弦补偿方法。为了解决不对称饱和问题,我们将输入不对称饱和的航空发动机线性模型转换为一个切换系统,使其所有子系统都具有对称饱和特性。在此基础上,设计了一种具有多个增益的开关抗绕组补偿器,以减轻饱和约束导致的性能下降。此外,输出约束也被纳入补偿设计,以防止在控制过程中发动机输出超过其允许的限制。通过在不同抗卷绕增益之间的实时切换,可以充分利用作动器的性能,进一步实现更理想的发动机性能。最后通过硬件在环(HIL)测试和对比结果验证了该方法的有效性和优越性。
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Output-Constrained Switching Anti-Windup Compensation for Aero-Engines With Asymmetric Input Saturation
In practical aero-engine control systems, saturation constraints on the control input are inherently asymmetric and the engine outputs may exceed their physical or safety limits during the operation. This letter proposes a switching anti-windup compensation for aero-engines incorporating the asymmetric input saturation and output constraint simultaneously. To tackle the asymmetric saturation, we transform the aero-engine linear model with asymmetrically saturated input into a switched system, and all its subsystems possess symmetric saturation property. Based on this transformation, a switching anti-windup compensator with multiple anti-windup gains is developed to mitigate the performance deterioration induced by the saturation constraints. Furthermore, output constraints are also incorporated into the compensation design, which prevents engine outputs from exceeding their allowable limits during the control process. The switching between different anti-windup gains in real time can fully utilize the actuator capability, and further achieving a more desirable engine performance. Finally, hardware-in-loop (HIL) testing and comparative results demonstrate its effectiveness and superiority.
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来源期刊
IEEE Control Systems Letters
IEEE Control Systems Letters Mathematics-Control and Optimization
CiteScore
4.40
自引率
13.30%
发文量
471
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