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Mixed-structure control system for an unconventional coaxial-ducted fan aircraft with input saturation

机译:具有输入饱和的非常规同轴导管风扇飞机的混合结构控制系统

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This paper presents a mixed-structure control system for a novel ducted fan aircraft in the presence of input constraint, system uncertainty and external disturbance. The control system includes mainly two parts: a robust nominal controller and a L1 adaptive augmentation. The robust nominal controller architecture consists of two loops. The inner-loop is designed as a static state feedback control matrix via H-infinity synthesis. This loop mainly provides state decoupling and external disturbance rejection. The outer-loop is defined as a series of PD controllers. This loop ensures the nominal tracking performance. Unlike tradition robust controller solution, the design constraints are expressed in terms of a series of closed-loop transfer functions. Both inner and outer loop controller elements are calculated by a non-smooth H-infinity optimizer at the same time. The L1 adaptive augmentation is mainly responsible for large uncertainty estimation and compensation. The simulation results prove that the L1 adaptive structure is able to provide a relative better performance for system with input saturation and large uncertainty.
机译:本文介绍了一种在输入限制,系统不确定性和外部干扰的存在下进行新型管道风扇飞机的混合结构控制系统。控制系统主要包括两部分:强大的标称控制器和L1自适应增强。强大的标称控制器架构由两个循环组成。内环通过H-Infinity合成设计为静态反馈控制矩阵。该循环主要提供状态去耦和外部干扰抑制。外环被定义为一系列PD控制器。此循环确保了标称跟踪性能。与传统鲁棒控制器解决方案不同,设计约束以一系列闭环传输函数表示。内部和外环控制器元件都是由非平滑H-Infinity Optimizer同时计算的。 L1自适应增强主要负责大的不确定性估算和补偿。仿真结果证明,L1自适应结构能够为具有输入饱和度的系统提供相对更好的性能和大的不确定性。

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