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首页> 外文期刊>International Journal of Control, Automation and Systems >Robust multi-mode flight control design for an unmanned helicopter based on multi-loop structure
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Robust multi-mode flight control design for an unmanned helicopter based on multi-loop structure

机译:基于多回路结构的无人直升机鲁棒多模飞行控制设计

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摘要

In this paper, a novel multi-mode flight control strategy for unmanned helicopter, in presence of model uncertainty, atmospheric disturbances and handling qualities specification requirements (as in ADS-33E), based on multi-loop control structure combining robust H-infinity and PI control is presented. In inner loop H-infinity optimal control technique is utilized ensuring the stability of flight control system in case of change of helicopter dynamics, model uncertainties and eliminates effect of gust disturbance on helicopter states and collective/cyclic inputs. PI control in outer loop is used to improve the dynamic and static operation characteristics. Attitude control and attitude holding flight mode with satisfactory command response and decoupling characteristics is designed using the proposed control strategy. Analysis and simulation results show that Level 1 handling requirements as defined in ADS-33E are accomplished even when helicopter is under constant wind circumstance.
机译:本文提出了一种新颖的多模式无人直升机飞行控制策略,该模型在模型不确定性,大气干扰和操纵质量规格要求存在的情况下(如ADS-33E),基于鲁棒H无限和介绍了PI控制。在内部回路中,采用H无限最优控制技术,以确保在直升机动力变化,模型不确定性的情况下飞行控制系统的稳定性,并消除阵风干扰对直升机状态和集体/循环输入的影响。外环的PI控制用于改善动态和静态操作特性。利用所提出的控制策略设计了具有满意的命令响应和解耦特性的姿态控制和姿态保持飞行模式。分析和仿真结果表明,即使直升机处于恒定风环境下,也可以达到ADS-33E中定义的1级处理要求。

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