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首页> 外文期刊>International Journal of Theoretical and Applied Mechanics >Robust pressure control improves the performance of redundant fly-by-wire hydraulic actuators
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Robust pressure control improves the performance of redundant fly-by-wire hydraulic actuators

机译:鲁棒压力控制提高了冗余飞绕型液压执行器的性能

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摘要

Aircraft primary flight control surfaces are typically driven by two linear hydraulic actuators accepting the controlled flows from two independent hydraulic systems. When the actuators are part of a fly-by-wire system, actuators flows are controlled by valves, and a key issue is to ensure a pressure matching between the two actuators to prevent force fighting with a resulting loss of stiffness and dynamic performance. Different solutions have been used to minimize the pressure mismatch between two redundant electro hydraulic actuators, but limited use has been done of techniques based on generating compensation signals to reduce the difference between the pressure differentials of the two servo actuators. The advances in microprocessors computing power offer new possibilities that can be exploited to perform a good pressure matching between redundant actuators by using an appropriate control strategy without the need of a complex hydraulic design. This paper first presents a brief survey of the existing architectures of dual redundant electro hydraulic servo actuators, then describes a research activity performed on this subject. An optimal and robust equalization control strategy was devised, capable of minimizing the force fighting between servo actuators while using conventional electro hydraulic servo valves, thereby leading to appreciable weight and cost savings.
机译:飞机初级飞行控制表面通常由两个直线液压致动器驱动,接受来自两个独立液压系统的受控流动。当致动器是逐线系统的一部分时,致动器流动由阀门控制,并且一个关键问题是确保两个致动器之间的压力匹配,以防止力丧失刚度和动态性能的损失。已经使用不同的解决方案来最小化两个冗余电液致动器之间的压力不匹配,但是基于产生补偿信号的技术已经完成了有限的技术,以减小两个伺服致动器的压差之间的差异。微处理器计算能力的进步提供了新的可能性,这些可能性可以通过使用适当的控制策略来利用冗余执行器之间的良好压力匹配而无需复杂的液压设计。本文首先介绍了对双冗余电动液压伺服执行器的现有架构的简要调查,然后描述了对该主题进行的研究活动。设计了一种最佳和稳健的均衡控制策略,能够在使用传统的电液伺服阀的同时最小化伺服执行器之间的力量,从而导致可观的重量和成本节省。

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