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Adaptive decoupling synchronous control of dissimilar redundant actuation system for large civil aircraft

机译:大型民用飞机异种冗余致动系统的自适应解耦同步控制

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摘要

In order to meet the increasing reliability requirements of actuation system for large civil aircraft, the novel distributed dissimilar redundant actuation system composed of one hydraulic actuator (HA) and one electro-hydrostatic actuator (EHA) has been applied to the design of advanced aircraft. This configuration can greatly improve the system reliability and effectively avoid potential common-mode/common-cause (CM/CC) failure. However, this actuation configuration can exhibit force fighting problem between HA and EHA due to their different driving mechanisms and rigid coupling when they operate in the active/active mode, which may even cause damage to the control surface. To resolve this problem, an adaptive decoupling synchronous controller (ADSC) is proposed in this study. The coupling effect between HA and EHA is taken into account, and an adaptive decoupling controller is designed to eliminate the coupling term. Parameter adaption law is designed for the parametric uncertainties. In addition, a feed-forward compensator is proposed to compensate for the difference between HA and EHA by accelerating the dynamic response of EHA. Finally, the comparative simulation results indicate that the proposed ADSC controller has high speed/high robustness performances and can effectively reduce the force fighting between HA and EHA. (C) 2015 Elsevier Masson SAS. All rights reserved.
机译:为了满足大型民用飞机致动系统对可靠性的日益提高的要求,一种由一个液压致动器(HA)和一个静液压致动器(EHA)组成的新型分布式异种冗余致动系统已应用于先进飞机的设计中。此配置可以大大提高系统可靠性,并有效避免潜在的共模/共因(CM / CC)故障。然而,由于其在主动/主动模式下操作时,由于其不同的驱动机构和刚性耦合,因此这种致动配置可能在HA和EHA之间表现出抗力问题,甚至可能损坏控制表面。为了解决这个问题,本研究提出了一种自适应解耦同步控制器(ADSC)。考虑到HA和EHA之间的耦合效应,设计了自适应去耦控制器以消除耦合项。参数自适应定律是为参数不确定性设计的。此外,提出了一种前馈补偿器,通过加速EHA的动态响应来补偿HA和EHA之间的差异。最后,比较仿真结果表明,所提出的ADSC控制器具有高速/高鲁棒性,可以有效减少HA和EHA之间的力斗。 (C)2015 Elsevier Masson SAS。版权所有。

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